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Tj 18 0 TD 0 Tc (Purpose.) Tj ET 104.4 660.48 52.32 0.72 re f BT 156.72 661.92 TD 0 Tc -0.0035 Tw ( This manual presents recommended procedures for the) Tj -70.32 -13.68 TD 0 Tc -0.003 Tw (calibration of testing equipment commonly used in Corps of Engineers) Tj 0 -13.68 TD -0.0013 Tc -0.0016 Tw (soils laboratories. As a supplement to EM 1110-2-1906, "Laboratory) Tj T* -0.0012 Tc -0.0017 Tw (Soils Testing," it has been prepared as an aid in establishing and main-) Tj T* -0 Tc -0.0026 Tw (taining acceptable accuracy for soils testing equipment.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (2.) Tj 18 0 TD -0.0012 Tc (Applicability.) Tj ET 104.4 578.4 80.4 0.72 re f BT 184.8 579.84 TD -0.0009 Tc -0.002 Tw ( The provisions of this manual are applicable to all) Tj -98.4 -13.68 TD 0 Tc -0.0032 Tw (Corps of Engineers divisions and districts having Civil Works functions.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (3.) Tj 18 0 TD 0.0015 Tc (References.) Tj ET 104.4 537.36 68.64 0.72 re f BT 104.4 511.44 TD -0.0043 Tc (a.) Tj 18 0 TD -0.0027 Tc -0 Tw (EM 1110-2-1906,) Tj -18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0 Tc -0.0022 Tw (Relevant Federal Specifications, ASTM publications, and special) Tj -36 -13.68 TD 0 Tc -0.0033 Tw (reports are listed in Appendix A. These references are identified in) Tj 0 -13.68 TD -0.0008 Tc -0.0021 Tw (the main text by number as listed in the appendix.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (4.) Tj 18 0 TD 0.0011 Tc (Introduction.) Tj ET 104.4 427.92 78.72 0.72 re f BT 104.4 402 TD -0.0043 Tc (a.) Tj 18 0 TD -0 Tc -0.0025 Tw (Need for Calibration of Equipment.) Tj ET 122.4 400.56 211.68 0.72 re f BT 334.08 402 TD -0 Tc -0.0022 Tw ( Soil test results are only as) Tj -247.68 -13.68 TD 0 Tc -0.0032 Tw (accurate as. the procedures and equipment used to produce them. By) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (constant vigilance and regular, careful calibration and inspection of) Tj T* 0 Tc -0.0029 Tw (equipment, laboratory personnel can ensure acceptable accuracy of test) Tj T* 0 Tc -0.003 Tw (results. The necessary frequency of calibration depends on the type and) Tj T* -0 Tc -0.0028 Tw (use of equipment. A record should be kept containing the actual cali-) Tj T* -0.0008 Tc -0.0021 Tw (bration data: date of calibration, names of persons doing the calibration,) Tj T* -0 Tc -0.0025 Tw (and information on calibration devices and methods used.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0 Tc -0.0025 Tw (The Laboratory Environment.) Tj ET 122.4 277.44 180 0.72 re f BT 104.4 251.52 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (In addition to the requirement for maintaining equipment of) Tj -45.12 -13.68 TD -0 Tc -0.0026 Tw (known accuracy, a soils laboratory should maintain control of the) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (testing environment. Areas in which consolidation, permeability,) Tj T* 0 Tc -0.0029 Tw (triaxial \(especially with pore water pressure measurements\), direct) Tj T* -0 Tc -0.0026 Tw (shear, and, to a lesser extent, hydrometer analyses and compaction) Tj T* -0 Tc -0.0023 Tw (tests are performed should be maintained at a reasonably comfortable) Tj T* 0.0015 Tc -0.0044 Tw (uniform temperature with a range in temperature not to exceed \2615 F;) Tj T* -0 Tc -0.0025 Tw (otherwise the test results often become erratic and questionable. The) Tj T* -0.0008 Tc -0.0021 Tw (resolving of ambiguous test data is often possible by means of a) Tj ET endstream endobj 13 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 14 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 216 -689.28 TD -0.0058 Tc 0 Tw (2) Tj -216 664.08 TD 0.001 Tc -0.0039 Tw (continuous chart record of room temperature.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD 0 Tc -0.0034 Tw (A central forced draft system, where the air is heated or cooled) Tj -45.12 -13.68 TD 0 Tc -0.0033 Tw (as required, filtered to remove dust, and returned through ducts to the) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (various parts of the laboratory, is generally the most satisfactory) Tj T* 0 Tc -0.003 Tw (means of temperature control. In areas where undisturbed soil sam-) Tj T* 0 Tc -0.003 Tw (ples are stored or test specimens are prepared, a high relative humid-) Tj T* -0 Tc -0.0022 Tw (ity should be maintained. To measure the humidity of such areas, a) Tj T* -0 Tc -0.0029 Tw (wet and dry bulb thermometer or a direct indicating dial hygrometer) Tj T* -0 Tc -0.0028 Tw (may be used. Dial hygrometers frequently need checking to ensure a) Tj T* -0 Tc -0.0023 Tw (reasonable accuracy; this may be easily done by using a sling psy-) Tj T* 0 Tc -0.0034 Tw (chrometer or a wet and dry bulb thermometer. Erroneous and erratic) Tj T* -0 Tc -0.0025 Tw (results may be obtained on some soils under conditions of low relative) Tj T* -0.0009 Tc -0.002 Tw (humidity when liquid and plastic limits tests are being made. Opera-) Tj T* 0 Tc -0.0033 Tw (tions that produce dust such as sieving, processing, or pulverizing) Tj T* -0 Tc -0.0025 Tw (should be conducted in an area separate from the main laboratory, and) Tj T* -0 Tc -0.0026 Tw (an adequate means of removing, the dust from the atmosphere, either by) Tj T* -0 Tc -0.0028 Tw (filtration or exhausting to the outside, should be provided. Noisy oper-) Tj T* -0 Tc -0.0024 Tw (ations such as sieving, compaction, and maximum density tests should) Tj T* -0 Tc -0.0028 Tw (be conducted in rooms separate from the main laboratory because of) Tj T* 0 Tc -0.003 Tw (their adverse effect on other laboratory personnel. If possible, the lab-) Tj T* 0 Tc -0.0033 Tw (oratory floor should be concrete. Many testing devices are driven by) Tj T* -0 Tc -0.0026 Tw (motors which should be isolated from the soil specimens being tested.) Tj T* -0 Tc -0.0028 Tw (Special rubber or cork pads can be used to mount shear and consolida-) Tj T* -0.0008 Tc -0.0021 Tw (tion equipment, isolating them from objectionable vibration. Generally,) Tj T* -0.0008 Tc -0.0021 Tw (to be detrimental a vibration must be of such amplitude as to be more) Tj T* -0 Tc -0.0024 Tw (than barely perceptible. One simple method to determine the magnitude) Tj T* -0 Tc -0.0024 Tw (of vibration is to place a beaker of water on the platform holding the test) Tj T* 0 Tc -0.0033 Tw (specimen and observe the water surface. An unrippled water surface) Tj T* -0 Tc -0.0024 Tw (usually indicates, for routine testing, a level of vibration not detrimental) Tj T* -0 Tc -0.0027 Tw (to the specimen being tested. Tests of long duration, such as consolida-) Tj T* -0 Tc -0.0028 Tw (tion, shear, etc., on sensitive soils, require a much more vibration-free) Tj T* -0 Tc -0.0026 Tw (testing environment than insensitive soils or short testing times.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD 0 Tc -0.0031 Tw (Areas in the laboratory that receive direct sunlight or heat from) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (other sources such as radiators, ovens, and hot plates should be avoided) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (for those tests where temperature changes adversely affect test results,) Tj T* -0 Tc -0.0026 Tw (for example, consolidation, triaxial shear \(especially where pore water) Tj T* 0 Tc -0.0031 Tw (pressure is measured\), and hydrometer analyses where a constant-) Tj T* -0 Tc -0.0024 Tw (temperature water bath is not used.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (There are some types of balances, particularly the newer) Tj -45.12 -13.68 TD -0 Tc -0.0025 Tw (single-pan, top-loading balances, that are sensitive to air currents.) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (These should either be properly shielded or located in areas where air) Tj T* 0 Tc -0.0035 Tw (currents from the heating or cooling system do not interfere with their) Tj T* 0 Tc -0.0035 Tw (proper operation.) Tj ET endstream endobj 15 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 16 0 obj [17 0 R 18 0 R] endobj 17 0 obj <>stream q 439.44 0 0 404.64 86.4 171.84 cm /im1 Do endstream endobj 18 0 obj <>stream Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -172.08 -689.28 TD -0.0058 Tc 0 Tw (3) Tj -216 664.08 TD -0.0043 Tc (5.) Tj 18 0 TD -0 Tc -0.0027 Tw (Linear Measurements.) Tj ET 104.4 701.52 136.32 0.72 re f BT 240.72 702.96 TD 0 Tc -0.003 Tw ( The specific device to be used for making) Tj -154.32 -13.68 TD 0 Tc -0.0032 Tw (linear measurements depends upon the accuracy required; however,) Tj 0 -13.68 TD -0 Tc -0.0022 Tw (several of the devices listed in Table 1 have about the same degree of) Tj T* -0 Tc -0.0028 Tw (accuracy and could be used interchangeably. Linear measurements are) Tj T* -0 Tc -0.0028 Tw (made for two basic purposes: \(a\) to establish the accuracy of testing) Tj T* 0 Tc -0.0029 Tw (equipment and \(b\) to measure the physical phenomena occurring in a) Tj T* -0 Tc -0.0027 Tw (test to determine the properties of the soil sample.) Tj 102.72 -27.36 TD -0.001 Tc -0.0019 Tw (Table 1. 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Tj ET 122.4 701.52 102.96 0.72 re f BT 225.36 702.96 TD -0 Tc -0.0026 Tw ( Rigid steel rules that have machine-divided) Tj -138.96 -13.68 TD -0.0008 Tc -0.0021 Tw (graduations are suitable for measurements to 0.01 in. These rules may) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (be used as primary standards to check flexible printed-scale steel tapes) Tj T* -0 Tc -0.0025 Tw (should this ever become desirable.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0 Tc (Cathetometers.) Tj ET 122.4 633.12 92.4 0.72 re f BT 214.8 634.56 TD -0 Tc -0.0024 Tw ( Cathetometers \(Fig. 1.\) are suitable for linear) Tj -128.4 -13.68 TD -0 Tc -0.0026 Tw (measurements that require a precision between that provided by) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (machine-divided metal rules and vernier or micrometer calipers.) Tj T* -0.001 Tc -0.0019 Tw (Cathetometers are usually 40 or 100 cm in length and read to 0.1 mm by) Tj T* 0 Tc -0.0033 Tw (means of a vernier. Instruments with higher precision but shorter) Tj T* -0.001 Tc -0.0019 Tw (lengths and reading to 0.01 mm are available. Because readings are) Tj T* -0 Tc -0.0027 Tw (made by means of a telescope with cross hairs, cathetometers are par-) Tj T* -0 Tc -0.0027 Tw (ticularly suited for making measurements where it is impractical or) Tj T* -0 Tc -0.0027 Tw (difficult to contact the object being measured, e.g. heights of liquid in) Tj T* -0 Tc -0.0027 Tw (manometers or standpipes. Other instruments similar to cathetom-) Tj T* -0 Tc -0.0023 Tw (eters are available; most of these have short ranges \(15-cm maximum\).) Tj T* -0 Tc -0.0028 Tw (Some of these instruments are toolmaker's microscope, measuring mi-) Tj T* 0 Tc -0.0033 Tw (croscope, and a low-power \(10X\) microscope with a cross-hair reticle) Tj T* -0 Tc -0.0024 Tw (in the eyepiece and a graduated mechanical stage. Cathetometers and) Tj T* -0 Tc -0.0025 Tw (similar instruments may be calibrated with a vernier caliper \(reading) Tj T* -0 Tc -0.0021 Tw (to 0.001 in.\) or a micrometer caliper by setting a known length between) Tj T* -0 Tc -0.0028 Tw (the jaws of the caliper; this distance is then measured with the instru-) Tj T* -0 Tc -0.0023 Tw (ment being calibrated. Care should be taken to ensure that the plane of) Tj T* 0 Tc -0.0031 Tw (the jaws of the caliper is perpendicular to the line of sight of the tele-) Tj T* 0 Tc -0.0032 Tw (scope on the cathetometer.) Tj 18 -27.36 TD 0.0014 Tc 0 Tw (c.) Tj 18 0 TD -0 Tc -0.0023 Tw (Optical Reticles.) Tj ET 122.4 345.84 98.16 0.72 re f BT 220.56 347.28 TD -0 Tc -0.0028 Tw ( Optical reticles or micrometer disks are glass) Tj -134.16 -13.68 TD -0.0008 Tc -0.0021 Tw (disks, 20 to 27 mm in diameter, on which are accurate scales, typically) Tj 0 -13.68 TD -0.0014 Tc -0.0014 Tw (0-10 mm or 0-0.5 in. long \(Fig. 2\). A suitable instrument is available) Tj T* 0 Tc -0.0031 Tw (from Edmund Scientific Company, 600 Edscorp Building, Barrington,) Tj T* -0.002 Tc -0.0008 Tw (New Jersey 08007, as their Catalog No. 30055, 12X magnifier, and) Tj T* -0.0013 Tc -0.0015 Tw (Catalog No. 30585 reticle. Similar instruments are available from) Tj T* 0 Tc -0.003 Tw (most of the scientific supply companies. Reticles either are used with) Tj T* 0 Tc -0.0032 Tw (magnifiers \(called measuring magnifiers or pocket comparators\) or are) Tj T* 0 Tc -0.003 Tw (inserted into the optical system of a low-power \(10X\) microscope. Be-) Tj T* -0 Tc -0.0026 Tw (cause the object and scale are both magnified, good accuracy is easily) Tj T* 0 Tc -0.0032 Tw (secured. Reticles are very convenient for small linear measurements) Tj T* -0 Tc -0.0024 Tw (such as the diameter of permeability standpipes, dimensions of liquid) Tj T* -0 Tc -0.0023 Tw (limit grooving tools, and sieve openings. To calibrate an optical ret-) Tj T* -0.0008 Tc -0.0021 Tw (icle, it should be assembled in the magnification system in which it will) Tj T* -0 Tc -0.0022 Tw (be used: A suitable distance is then set between the jaws of either a) Tj T* -0 Tc -0.0028 Tw (vernier or micrometer caliper \(reading to 0.001 in.\) and the distance as) Tj T* -0 Tc -0.0026 Tw (read using the reticle determined. If available, a stage micrometer) Tj T* -0 Tc -0.0024 Tw (may also be used to check a reticle. Stage micrometers are glass) Tj T* -0 Tc -0.0025 Tw (slides, 25 by 75 mm, with scales ruled directly upon them Either re-) Tj T* -0 Tc -0.0027 Tw (flected or transmitted light may be used with the stage micrometer.) 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EI Q Q q 183.84 378.72 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 378.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@ EI Q Q q 183.84 378.48 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 378.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??@| EI Q Q q 183.84 378.24 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 378.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?` EI Q Q q 183.84 378 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 378 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?_? EI Q Q q 183.84 377.76 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 377.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 183.84 377.52 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 377.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 183.84 377.28 246.48 0.24 re W n q 247.92 0 0 0.24 183.84 377.28 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 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EI Q Q q 183.12 344.16 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 344.16 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x>`<??? EI Q Q q 183.12 343.92 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 343.92 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0c>ǀ?? EI Q Q q 183.12 343.68 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 343.68 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x >8?@ A EI Q Q q 183.12 343.44 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 343.44 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x >p`x EI Q Q q 183.12 343.2 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 343.2 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x??x@x` EI Q Q q 183.12 342.96 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 342.96 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x??>x?y8 EI Q Q q 183.12 342.72 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 342.72 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0?@?0?A EI Q Q q 183.12 342.48 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 342.48 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |s?p8A EI Q Q q 183.12 342.24 247.2 0.24 re W n q 248.16 0 0 0.24 183.12 342.24 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@>x?|A EI Q Q q 183.12 342 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 342 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ?c|?| EI Q Q q 183.12 341.76 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 341.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID wC~ EI Q Q q 183.12 341.52 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 341.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?π8?p EI Q Q q 183.12 341.28 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 341.28 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? <`? EI Q Q q 183.12 341.04 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 341.04 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??8|`? EI Q Q q 183.12 340.8 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 340.8 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `???8| >  ? EI Q Q q 183.12 340.56 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 340.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0 ~p8`p><?? EI Q Q q 183.12 340.32 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 340.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >8~`|8`?? EI Q Q q 183.12 340.08 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 340.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <0?< ~x`p>?? EI Q Q q 183.12 339.84 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 339.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??98p|x`?@ ? 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EI Q Q q 183.12 337.92 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 337.92 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ǀ |?8 EI Q Q q 183.12 337.68 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 337.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @? ?0 ~< EI Q Q q 183.12 337.44 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 337.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???  EI Q Q q 183.12 337.2 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 337.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~>?>?> EI Q Q q 183.12 336.96 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 336.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~~ > EI Q Q q 183.12 336.72 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 336.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  > >? EI Q Q q 183.12 336.48 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 336.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~?  ? 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EI Q Q q 183.12 334.8 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 334.8 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`|?|~` EI Q Q q 183.12 334.56 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 334.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >?|?p?x EI Q Q q 183.12 334.32 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 334.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <8>p`~ EI Q Q q 183.12 334.08 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 334.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x8q9x`???> EI Q Q q 183.12 333.84 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 333.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID pp?Ç|?> EI Q Q q 183.12 333.6 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 333.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ?8?> EI Q Q q 183.12 333.36 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 333.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >C`?s> EI Q Q q 183.12 333.12 247.2 0.24 re W n q 247.92 0 0 0.24 183.12 333.12 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID {?0?? 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EI Q q 248.16 0 0 0.24 182.16 291.36 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???`a|?x EI Q q 248.16 0 0 0.24 182.16 291.12 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??~8.|~ EI Q q 248.16 0 0 0.24 182.16 290.88 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`?|x?808 EI Q q 248.16 0 0 0.24 182.16 290.64 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<p?px8 EI Q q 248.16 0 0 0.24 182.16 290.4 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?xπx8 EI Q q 248.16 0 0 0.24 182.16 290.16 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ><?8|x EI Q q 248.16 0 0 0.24 182.16 289.92 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@8@0 EI Q q 248.16 0 0 0.24 182.16 289.68 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0~? EI Q q 248.16 0 0 0.24 182.16 289.44 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x|p?gp EI Q q 248.16 0 0 0.24 182.16 289.2 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x<p@?x8 EI Q q 248.16 0 0 0.24 182.16 288.96 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x p@???<  EI Q q 248.16 0 0 0.24 182.16 288.72 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x8?~s  EI Q q 248.16 0 0 0.24 182.16 288.48 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >cpp EI Q q 248.16 0 0 0.24 182.16 288.24 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID wa??? EI Q q 248.16 0 0 0.24 182.16 288 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID w ?? 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EI Q q 247.92 0 0 0.24 182.16 286.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?p>? < EI Q q 247.92 0 0 0.24 182.16 286.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?a ?x``< EI Q q 247.92 0 0 0.24 182.16 285.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? p?~`  EI Q q 247.92 0 0 0.24 182.16 285.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~s EI Q q 247.92 0 0 0.24 182.16 285.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`>p EI Q q 247.92 0 0 0.24 182.16 285.12 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>>xǀ0 EI Q q 247.92 0 0 0.24 182.16 284.88 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>?>y EI Q q 247.92 0 0 0.24 182.16 284.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?pc EI Q q 247.92 0 0 0.24 182.16 284.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q q 247.92 0 0 0.24 182.16 284.16 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??@  EI Q q 247.92 0 0 0.24 182.16 283.92 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <Cx@?p? EI Q q 247.92 0 0 0.24 182.16 283.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8 ~|@? EI Q q 247.92 0 0 0.24 182.16 283.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??x|?? EI Q q 247.92 0 0 0.24 182.16 283.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?p|8p ~ EI Q q 247.92 0 0 0.24 182.16 282.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? |?x p?< EI Q q 247.92 0 0 0.24 182.16 282.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|?x?< EI Q q 247.92 0 0 0.24 182.16 282.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??<8> EI Q q 247.92 0 0 0.24 182.16 282.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x 88?? EI Q q 247.92 0 0 0.24 182.16 282 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID _??? 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EI Q q 247.92 0 0 0.24 182.16 280.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID #?` EI Q q 247.92 0 0 0.24 182.16 280.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID }`8~?0 EI Q q 247.92 0 0 0.24 182.16 280.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x@|?| EI Q q 247.92 0 0 0.24 182.16 279.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID q?8 EI Q q 247.92 0 0 0.24 182.16 279.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID '8 EI Q q 247.92 0 0 0.24 182.16 279.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??? EI Q q 247.92 0 0 0.24 182.16 279.12 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID }p EI Q q 247.92 0 0 0.24 182.16 278.88 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y`~ EI Q q 247.92 0 0 0.24 182.16 278.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y៏~/8> EI Q q 182.16 278.4 247.92 0.24 re W n q 248.16 0 0 0.24 181.92 278.4 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |8;?? EI Q Q q 182.16 277.92 247.92 0.24 re W n q 248.16 0 0 0.24 181.92 277.92 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? 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EI Q Q q 182.16 256.32 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 256.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <?x  EI Q Q q 182.16 256.08 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 256.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??0 EI Q Q q 182.16 255.84 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 255.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??`?p EI Q Q q 182.16 255.6 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 255.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??xx?? ? EI Q Q q 182.16 255.36 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 255.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?????? EI Q Q q 182.16 255.12 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 255.12 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<????? EI Q Q q 182.16 254.88 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 254.88 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x??? EI Q Q q 182.16 254.64 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 254.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 182.16 254.4 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 254.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~?? EI Q Q q 182.16 253.44 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 253.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???>? EI Q Q q 182.16 253.2 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 253.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?> EI Q Q q 182.16 252.96 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 252.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p=?`p?<? EI Q Q q 182.16 252.72 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 252.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~?@p??8 EI Q Q q 182.16 252.48 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 252.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |?p?? EI Q Q q 182.16 252.24 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 252.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ???0 EI Q Q q 182.16 252 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 252 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ? ? EI Q Q q 182.16 251.76 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 251.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 182.16 251.52 247.44 0.24 re W n q 247.92 0 0 0.24 181.68 251.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <?? EI Q Q q 182.16 251.28 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 251.28 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @???@>?x@ EI Q Q q 182.16 251.04 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 251.04 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x?|@<d EI Q Q q 182.16 250.8 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 250.8 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  0?xx`f EI Q Q q 182.16 250.56 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 250.56 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?Op??x ~|?` EI Q Q q 182.16 250.32 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 250.32 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?9??? ~` EI Q Q q 182.16 250.08 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 250.08 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >;<~?p  0 EI Q Q q 182.16 249.84 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 249.84 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p<~?`?N EI Q Q q 182.16 249.6 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 249.6 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8 09 EI Q Q q 182.16 249.36 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 249.36 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?  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EI Q Q q 182.16 247.44 247.44 0.24 re W n q 248.16 0 0 0.24 181.44 247.44 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8<< ? EI Q Q q 182.16 247.2 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 247.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID < ??|8?~x? EI Q Q q 182.16 246.96 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 246.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >?<? EI Q Q q 182.16 246.72 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 246.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8 EI Q Q q 182.16 246.48 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 246.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 182.16 246.24 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 246.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @8??? ? EI Q Q q 182.16 246 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 246 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @7 EI Q Q q 182.16 245.76 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 245.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?;o? EI Q Q q 182.16 245.52 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 245.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? ?`? EI Q Q q 182.16 245.28 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 245.28 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x? EI Q Q q 182.16 245.04 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 245.04 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>??x? EI Q Q q 182.16 244.8 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 244.8 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0s?8> EI Q Q q 182.16 244.56 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 244.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??χ~>> EI Q Q q 182.16 244.32 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 244.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|~p?8> EI Q Q q 182.16 244.08 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 244.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x?~?? EI Q Q q 182.16 243.84 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 243.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??>??x EI Q Q q 182.16 243.6 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 243.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p?~? p~?8 EI Q Q q 182.16 243.36 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 243.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???|pp? 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EI Q Q q 182.16 241.92 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 241.92 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8|?p?>p EI Q Q q 182.16 241.68 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 241.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID O8?x> ?p EI Q Q q 182.16 241.44 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 241.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0`?|?<@| EI Q Q q 182.16 241.2 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 241.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |<~8< EI Q Q q 182.16 240.96 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 240.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <x~~x0< EI Q Q q 182.16 240.72 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 240.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >x0x EI Q Q q 182.16 240.48 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 240.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??p?x??|~xx EI Q Q q 182.16 240.24 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 240.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @x?8?8?>0 EI Q Q q 182.16 240 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 240 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p<??p<8??>  EI Q Q q 182.16 239.76 247.2 0.24 re W n q 247.92 0 0 0.24 181.44 239.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >~πq|8???<? 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EI Q Q q 182.16 230.64 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 230.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?=ǀ~ EI Q Q q 182.16 230.4 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 230.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??w???`|~ EI Q Q q 182.16 230.16 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 230.16 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????a?? EI Q Q q 182.16 229.68 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 229.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?  ??|?? EI Q Q q 182.16 229.44 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 229.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?s>?||? EI Q Q q 182.16 229.2 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 229.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8|< EI Q Q q 182.16 228.96 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 228.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8Ǐ|?|  EI Q Q q 182.16 228.72 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 228.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID π??0xx ? EI Q Q q 182.16 228.48 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 228.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID Ã?_??`p?? EI Q Q q 182.16 228.24 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 228.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID À<?`8?? EI Q Q q 182.16 228 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 228 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID Ç?À8q|~0`x<?? EI Q Q q 182.16 227.76 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 227.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID Ç0À?x_< EI Q Q q 182.16 227.52 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 227.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `00 !C?<?0 EI Q Q q 182.16 227.28 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 227.28 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `xc ? ? EI Q Q q 182.16 227.04 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 227.04 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8`a~??p EI Q Q q 182.16 226.8 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 226.8 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8`??x? EI Q Q q 182.16 226.56 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 226.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8p?0~?? EI Q Q q 182.16 226.32 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 226.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y0x?x?8` ? EI Q Q q 182.16 226.08 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 226.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?``|???|?8?a EI Q Q q 182.16 225.84 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 225.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p??x`p? EI Q Q q 182.16 225.6 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 225.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??x~??  EI Q Q q 182.16 225.36 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 225.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x? ?}? EI Q Q q 182.16 224.88 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 224.88 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |G?aϏ<>p?Ϗ> EI Q Q q 182.16 224.64 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 224.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ϟ?> EI Q Q q 182.16 224.4 246.96 0.24 re W n q 247.92 0 0 0.24 181.2 224.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8?Ǐ<|~ ? EI Q Q q 182.16 224.16 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 224.16 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??1 ??À EI Q Q q 182.16 223.92 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 223.92 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?p>??À<~ EI Q Q q 182.16 223.68 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 223.68 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??p???|?ß8 |88~8p EI Q Q q 182.16 223.44 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 223.44 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>?8?< EI Q Q q 182.16 222.96 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 222.96 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??>`|||p> EI Q Q q 182.16 222.72 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 222.72 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????? |<??|<> EI Q Q q 182.16 222.48 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 222.48 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`0`?Ⴠ> EI Q Q q 182.16 222.24 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 222.24 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??LJ||?p? ~  EI Q Q q 182.16 222 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 222 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|?p?~p?> EI Q Q q 182.16 221.76 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 221.76 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??|?|1x ~8 EI Q Q q 182.16 221.52 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 221.52 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?0??p`x EI Q Q q 182.16 221.28 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 221.28 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??3p??~x EI Q Q q 182.16 221.04 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 221.04 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???~`~?0 EI Q Q q 182.16 220.8 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 220.8 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?< <??? EI Q Q q 182.16 220.56 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 220.56 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??? 8A??? EI Q Q q 182.16 220.32 246.96 0.24 re W n q 248.16 0 0 0.24 180.96 220.32 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x {~?Ø  EI Q Q q 182.16 220.08 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 220.08 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??8p?8?!?Àx8 EI Q Q q 182.16 219.84 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 219.84 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??0??@ǎ?x8 EI Q Q q 182.16 219.6 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 219.6 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??????||φ0?|x EI Q Q q 182.16 219.36 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 219.36 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x0???q|8p EI Q Q q 182.16 219.12 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 219.12 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??????8x? EI Q Q q 182.16 218.88 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 218.88 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???``?p? EI Q Q q 182.16 218.64 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 218.64 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??~??q ? EI Q Q q 182.16 218.4 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 218.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????p?LJ<  EI Q Q q 182.16 218.16 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 218.16 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??0 EI Q Q q 182.16 217.92 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 217.92 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??~8 ?x?? EI Q Q q 182.16 217.68 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 217.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??xp>?>? EI Q Q q 182.16 217.44 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 217.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?????>?0? EI Q Q q 182.16 217.2 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 217.2 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y??p<xp  EI Q Q q 182.16 216.96 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 216.96 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID {π |?p|x&? ax EI Q Q q 182.16 216.72 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 216.72 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID yπp?n||px< EI Q Q q 182.16 216.48 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 216.48 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y8??>|~x? EI Q Q q 182.16 216.24 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 216.24 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |<|?>px<8? EI Q Q q 182.16 216 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 216 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |sp?8??y@?` EI Q Q q 182.16 215.76 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 215.76 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8y??>p!? EI Q Q q 182.16 215.52 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 215.52 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?r??y~p? EI Q Q q 182.16 215.28 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 215.28 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `?9>`<~? EI Q Q q 182.16 215.04 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 215.04 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??<| |  EI Q Q q 182.16 214.8 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 214.8 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???8~?~~~ ? EI Q Q q 182.16 214.56 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 214.56 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <x?8?p??~? EI Q Q q 182.16 214.32 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 214.32 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?gx8?p|`s8?8? EI Q Q q 182.16 212.4 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 212.4 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p~`~sx??? EI Q Q q 182.16 212.16 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 212.16 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <x?|x<?? EI Q Q q 182.16 211.92 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 211.92 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <x?>???@8r߀> EI Q Q q 182.16 211.68 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 211.68 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <??>???xpϏ? EI Q Q q 182.16 211.44 246.72 0.24 re W n q 247.92 0 0 0.24 180.96 211.44 cm BI /W 1033 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? }~?| EI Q Q q 182.16 210 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 210 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??>8@|?x?@ EI Q Q q 182.16 209.76 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 209.76 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ?o?>~<xq~ EI Q Q q 182.16 209.52 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 209.52 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID c? ?|>` EI Q Q q 182.16 209.28 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 209.28 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 80@8<?? EI Q Q q 182.16 209.04 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 209.04 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 182.16 208.8 246.72 0.24 re W n q 248.16 0 0 0.24 180.72 208.8 cm BI /W 1034 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|`z?>/Filter/CCITTFaxDecode/Height 485/Length 2559/Name/im2/Subtype/Image/Type/XObject/Width 1300>>stream &R  sx{@ J lWzz}==u׽H4QVAl X߯dhG״ Bxb(O { Sʿ{W6$itdA(%VE_ CȎ;9菇 mKoe>? Qk@ S]Bzkn-M8ah+:}?6a;r9QJ L"@}oÎC ۸'!j8a݇lr۽tiѨн46@50P X2 AXqMSmtv J@$L0A#qV7gaEYa0I>k9᳃;f&@XR-0@ >d2J])'R OdZQ[nFR!yRC2-kB݄AшPD6d9S9aܡ2(! `2AhP@ ]iH-Ap5I7/! #`X (fV! س%pa1mY̰l mƅ9p`3/02σ"pq m$r $D&IY`G \L9 &A Alq `Ðg& nj2 `x#B!5r` ! GD6zEd4H,hcHљ C$ ORu'ݦC@@t膍D 4ac!,,1в},9 8P(~4IE.@*4N`#!A"-Px xfFav]B5N;";FGQ@v d`} þ]}&D}@muc kac2 H!a2Wo I C|>"?}q x*G2|e@Wr7T _T[^@NP+5XKKpu pf<}fG2,}CSvwO1HAf>׸o/<}20Ϯ/dd!h'C Q'ߐ<#75"4Ș7%a5a![; C2A~U1ZWUO G͂ :%w Gӯݯkh0̎c endstream endobj 27 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 28 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 216 -689.28 TD -0.0058 Tc 0 Tw (6) Tj -198 664.08 TD -0.001 Tc (d.) Tj 18 0 TD -0 Tc (Calipers.) Tj ET 122.4 701.52 54 0.72 re f BT 176.4 702.96 TD -0 Tc -0.0023 Tw ( Calipers \(Fig. 3\) are made in a variety of styles and) Tj -90 -13.68 TD 0 Tc -0.0032 Tw (degrees of precision. Vernier calipers with dual scales reading to) Tj 0 -13.68 TD -0.0015 Tc -0.0014 Tw (1/128 in. and to 0.1 mm are available. Vernier calipers are also made) Tj T* -0 Tc -0.0028 Tw (reading to 0.001 in. or, if metric measurements are preferred, to) Tj T* -0.0013 Tc -0.0016 Tw (0.02 mm. Micrometer calipers usually read to 0.001 in. or to 0.0001 in.) Tj T* -0 Tc -0.0028 Tw (Micrometer calipers are also made reading to 0.01 mm. Micrometer) Tj T* -0 Tc -0.0025 Tw (calipers are not as versatile as vernier calipers because a separate) Tj T* -0 Tc -0.0027 Tw (tool is required for outside and inside measurements. Usually, for the) Tj T* 0 Tc -0.0031 Tw (same range and precision, micrometer calipers are more expensive) Tj T* 0 Tc -0.003 Tw (than vernier calipers. A machinist's 0- to 6-in. vernier caliper read-) Tj T* -0 Tc -0.0023 Tw (ing to 0.001 in. is useful for the measurement of soils testing equipment) Tj T* 0 Tc -0.0029 Tw (such as compaction molds, direct shear boxes and cutters, consolidation) Tj T* -0 Tc -0.0024 Tw (rings, and height of drop gage for liquid limit tests. Calipers may be) Tj T* 0 Tc -0.0033 Tw (checked for accuracy by using gage blocks of the appropriate size) Tj T* 0 Tc -0.0029 Tw (\(para g below\). Usually checks at three or four settings of the calipers) Tj T* 0 Tc -0.003 Tw (are sufficient to establish their accuracy. Tools of good design are) Tj T* 0 Tc -0.0029 Tw (provided with an adjustment of the zero setting when the jaws are) Tj T* -0 Tc -0.0026 Tw (closed. This adjustment varies with the tool, and the manufacturer's) Tj T* 0 Tc -0.003 Tw (instructions should be followed in setting the zero reading. Care should) Tj T* -0 Tc -0.0026 Tw (be taken not to close the jaws of the calipers too tightly either when) Tj T* -0 Tc -0.0026 Tw (making a measurement or the zero adjustment of a reading on a gage) Tj T* -0 Tc -0.0028 Tw (block. Some micrometer calipers are provided with a ratchet stop to) Tj T* -0.0015 Tc -0.0014 Tw (eliminate this possibility.) Tj 18 -27.36 TD -0.0014 Tc 0 Tw (e.) Tj 18 0 TD -0.0025 Tc -0 Tw (Dial Gages.) Tj ET 122.4 373.2 69.36 0.72 re f BT 104.4 347.28 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0026 Tw (Dial gages \(Fig. 4\) are used extensively for linear measure-) Tj -45.12 -13.68 TD -0 Tc -0.0026 Tw (ments in soil testing, the most common use being the measurement of) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (specimen dimensions before and during testing. When equipped with) Tj T* -0 Tc -0.0025 Tw (special holders or stands, dial gages are useful in calibration of equip-) Tj T* 0 Tc -0.0029 Tw (ment for measuring inside diameters and heights of cylinders, inside) Tj T* 0 Tc -0.0031 Tw (dimensions of direct shear boxes, and specimen cutters. In load rings,) Tj T* -0 Tc -0.0021 Tw (they are used to measure deflection \(loads\). Dial gages are available in) Tj T* -0.0022 Tc -0 Tw (ranges from 1/4 to 12 in. and graduations of 0.0001, 0.0005, 0.001, and) Tj T* -0.0013 Tc -0.0016 Tw (0.01 in. in the English system and in ranges from 0.625 to 200 mm and) Tj T* -0.0024 Tc -0 Tw (graduations of 0.001, 0.0025, 0.005, 0.02, and 0.01 mm in the metric) Tj T* -0 Tc -0.0023 Tw (system. The most commonly used dial gages in soil testing are those in) Tj T* -0.0013 Tc -0.0015 Tw (the 0- to 0.3- and the 0- to 0.5-in. ranges with 0.0001 graduations and) Tj T* -0.0014 Tc -0.0015 Tw (the 0- to 1.000-in. range with 0.001 graduations. For most soils labo-) Tj T* -0 Tc -0.0028 Tw (ratory testing, jeweled bearings and shockproof movements are) Tj T* 0 Tc 0 Tw (unnecessary.) Tj 18 -27.36 TD 0.001 Tc (\(2\)) Tj 27.12 0 TD -0.001 Tc -0.0018 Tw (To calibrate dial gages, a suitable holder or stand should be ob-) Tj -45.12 -13.68 TD -0 Tc -0.0028 Tw (tained \(Fig. 5\). A precise plane surface .on which the dial gage contact) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (point will rest must also be provided. The dial gage should be care-) Tj T* -0 Tc -0.0026 Tw (fully mounted so that the axis of the dial stem is perpendicular to the) Tj ET endstream endobj 29 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 30 0 obj [31 0 R 32 0 R 33 0 R] endobj 31 0 obj <>stream q 348.72 0 0 229.44 131.76 470.16 cm /im3 Do endstream endobj 32 0 obj <>stream Q q 306.72 0 0 167.76 152.64 189.84 cm /im4 Do endstream endobj 33 0 obj <>stream Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -172.08 -689.28 TD -0.0058 Tc 0 Tw (7) Tj -65.04 390.48 TD -0 Tc -0.0029 Tw (Fig. 3 Vernier calipers) Tj -5.76 -287.28 TD -0.0018 Tc -0.001 Tw (Fig. 4. 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Dial gage with magnetic holder ) Tj 270 0 TD -0.002 Tc -0.0009 Tw (b. Dial gage with stand) Tj -216.24 -27.36 TD -0.0012 Tc -0.0017 Tw (Fig. 5. Dial gage, with magnetic holder and stand) Tj -71.76 -41.04 TD -0 Tc -0.0025 Tw (plane surface. Gages with clockwise dials should be set at zero reading) Tj 0 -13.68 TD 0 Tc -0.0031 Tw (and the desired size gage block then inserted under the contact point) Tj T* -0 Tc -0.0022 Tw (and the dial reading taken. Gages with counterclockwise dials should be) Tj T* 0 Tc -0.0029 Tw (set at zero with the desired size gage block under the contact point.) Tj T* -0 Tc -0.0025 Tw (The gage block is then removed, and the contact point allowed to come) Tj T* -0 Tc -0.0026 Tw (in contact with the plane surface and the dial then read. This operation) Tj T* -0 Tc -0.0021 Tw (should be repeated at several points along the dial gage's travel. Care) Tj T* -0.001 Tc -0.0018 Tw (should be taken not to allow the dial gage hands to spin too rapidly as) Tj T* -0 Tc -0.0027 Tw (the measurements are made, as damage to the instrument or erroneous) Tj T* 0 Tc -0.0032 Tw (reading's may occur.) Tj 18 -27.36 TD 0 Tc 0 Tw (f.) Tj 18 0 TD 0 Tc -0.0031 Tw (Electrical Devices.) Tj ET 122.4 126.96 110.64 0.72 re f BT 233.04 128.4 TD 0 Tc -0.0034 Tw ( Electrical devices \(Fig. 6\) such as recti-) Tj -146.64 -13.68 TD 0 Tc -0.003 Tw (linear potentiometers and differential transformers are used with ap-) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (propriate indicating or recording equipment to measure deformation of) Tj T* -0 Tc -0.0028 Tw (soil specimens during testing., They are particularly useful where it is) Tj ET endstream endobj 40 0 obj <>/Filter/CCITTFaxDecode/Height 1244/Length 6317/Name/im5/Subtype/Image/Type/XObject/Width 1831>>stream & 5@|>Q)d zֵ^{I5D_~o_^eF2@_@Zھ{_}WZCKz'5k?_C H|g?u_1K Qj_^? m)@ >@@fznC}qD "?mrz]e?ۏg|4IC$#_p2DxhN?d r"ǿ!i&]o6_л. `bhtG|s= /doj>?@@3 TiAla,z@zz}dž!?r$.1{MPz5;Y  пM{ssWyo_j} 5@>HZy߼+Kر rA0N!S߻_ M 1mLv(ҏM?ՅB` {R XuGD@p@cNT M@H&C/A5 ?CMxAS gr 9 5I_\&B@ A0A +0Cl|4UydȸZN!L6_;%mKD- _UNfP&$UW&* >a% OeV*X&+<6㜤& ;tkI<4̈DЅ9!B;%va @jH)]pAC~L9M@HU 55d{€#$iհ~ 6M ͎ D$# BZ%A[ M&pdE@a(&aӄlX#@7 aC "038"5 Q(x Dt6xk @= Vaۄ86!$42MN2CN h ;T@r#< ș HpAT9h2!{Ax Kxa5D"H=0Yc :pٛ!N3X[ptvK^ m tnA@;U)X0zV@ u@0,0`d : riAACy$!P$/aa84o(GG]a^cC6յl, fXz,eW-6$ ر Ai& t Ȱq71"uӫM=`#P6Z,4 mhpͺ1yyAh</TkWv{W h *[AlHݚ61p3nk4P%VD3=  醈kOwX -iC 4 5FuPu: ٫im @% V0qTAC  dCdBk!FLvF$bwpmnd3o5lw Q&49 7*kL%|( )x2$ ΂&+ fAl5 ׶D6 lH*!}& !<J3 ]<4I"`\Bz<+4  .: 2 <\ %$xP xiQA9*x#XD\2Y4 nC 'hRKCYIh /L9 :" 3xr `¯jddK o pa(Y* ƃAۃ@9Y<DpH)whL$I퇋*P!%`qAddbP" n@An@4&Y Vt} lUUk<0PVAKiXMױJ"aE@ P ŭ04ÐstamäH.(2xh'Av:[X" 덐扫A"ǽy f .@ !mu(p]2 Z^ÂH&1/A$k  qՠn7L&nAj !kG2R  pSCD!@ ^UhΐUH#D19 }8X/i;@;$IaG + VAGcr r EB`ᴱATq^xh* ,: 0Y d@PP$F6@ H!1G5 eke0؈[3" 'x1 < dx:` EAa2 qhBɀ<2H'owr4khk߇* 6B]$|< WjAqڬ5ȮA'إd:E Y d1kZE  0t׃* @"L_U=!PI@ˌ`i8a 4- l# "BA +] Vy5Xb  RhNAl{UY { Wd_ے4 dUױD +g`@M ol*A{H=udp<2 -k6C  V/['KR C+iI4XUri;ZkG`2z5. 5i;T\@ 0 @:bO x5XI JMĨ+E 5}<7Bd ~`D 55@49@ׁQa7" P\K  DH9W^\=zr0X0Ha@:(%OMJ % J =U +@mx)`mY3 v` xgb`li/Жϐ;糽"8[0P4 S`x)D3h + w\>@6T"#%b"qAg >@CR95d A;rz#H)5Y*BO0+ Dp X|X@ P|RKC$@$ <X D ( OLd3,CUd’u;8k d,2A8޳a IPJw0*`\2}v@mMv 5*#|<=r |-dT DE w6r_2 F$$} 8dR>!3!} dEKk<@::`<<22r`dؑg,CxAAH1UNpťL  @hFnVV w  3BREPha2ZR^k@F`A@ 4r`+<2;K2T@j ehD)^A3WT^lb dfGjj=,f4Pf!aLK3 -&pQe0Ba8Ȱ2pFK<x ˅!PV\oO ! @e(3쩂38i@˲*2N + "peX f<َ@V|X4#hʀ9y"lr ,0)T R [giA=Hfp P2CBŝH";J V@6C ) aKdjyiֲ0lA[Za@ % dL9,AkA;K/ T3iYi+ TMd ˵]H3HaY3 U lkPjxa ۴d Us,TpF`-b : P$Cno)4?"l JA9.@L-k[@ endstream endobj 41 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 42 0 obj [43 0 R 44 0 R 45 0 R] endobj 43 0 obj <>stream q 188.88 0 0 180.72 336.96 532.56 cm /im6 Do endstream endobj 44 0 obj <>stream Q q 334.08 0 0 257.28 139.2 141.36 cm /im7 Do endstream endobj 45 0 obj <>stream Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -172.08 -689.28 TD -0.0058 Tc 0 Tw (9) Tj -216 664.08 TD -0 Tc -0.0024 Tw (desirable to record test data in the ab-) Tj 0 -13.68 TD 0 Tc -0.0035 Tw (sence of the operator \(for example, in) Tj T* 0 Tc -0.0031 Tw (tests of long duration, such as direct) Tj T* 0 Tc -0.003 Tw (shear tests that extend into off-duty) Tj T* 0 Tc -0.0035 Tw (hours\). Electrical devices are cali-) Tj T* -0 Tc -0.0027 Tw (brated using gage blocks or feeler) Tj T* 0 Tc -0.0033 Tw (\(thickness\) gages, using a procedure) Tj T* -0.0008 Tc -0.0021 Tw (similar to that used for dial gages.) Tj 18 -27.36 TD -0.0012 Tc 0 Tw (g.) Tj 18 0 TD -0.001 Tc -0.0019 Tw (Gage Blocks.) Tj ET 122.4 578.4 77.28 0.72 re f BT 199.68 579.84 TD -0.0016 Tc -0.0012 Tw ( Gage blocks) Tj -113.28 -13.68 TD -0.0013 Tc -0.0016 Tw (\(Fig. 7\) are metal blocks with two) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (parallel faces machined to a very ac-) Tj T* -0 Tc -0.0026 Tw (curate dimension. They are used as) Tj T* -0 Tc -0.0027 Tw (primary standards for the calibration) Tj T* 0 Tc -0.0031 Tw (or checking of practically all the lin-) Tj 252 0 TD -0 Tc -0.0026 Tw (Fig. 6 Rectiliner potenti-) Tj -252 -13.68 TD 0 Tc -0.0032 Tw (ear measuring devices previously dis-) Tj 288 0 TD -0 Tc -0.0022 Tw (ometer, 1/2-in. range) Tj -288 -13.68 TD 0 Tc -0.003 Tw (cussed, micrometer calipers, dial) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (gages, and electrical devices. Gage blocks should be kept clean and dry,) Tj T* -0 Tc -0.0029 Tw (and should be stored in boxes provided for them when not in use. They) Tj T* -0 Tc -0.0026 Tw (should be handled preferably with gloves or with clean, dry hands and) Tj T* 0 Tc -0.0029 Tw (wiped with a clean, dry cloth before storing after use. When stacked in) Tj 163.2 -328.32 TD -0.0021 Tc -0 Tw (Fig. 7. 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Q00h\&^/C$ψcmx X y1f RpV+67AR Bbz~,;"S.LrN@&`i;QDcaEd` !I#t…!2P@$"r /CCA?a2u hS t yY6 H{e:dcDqA{"TGh? /yE~5yʳ@ bNӐH Ha P:T4xHVІT =2]CA !m v 4.:QjGXd| #CU(@VCJݍb4! ^@ FFdx 2 AXRQ dwҰ$ Cd2/"]0CҦEt!zZ 1S>4A6;V9 +!ƈ+QT݊!@9x*EL"`*N1A2o'vPAQTQ{m"XlN"$܆qB_mDQ)D b#h hhӎ)ÃgV j AzA CTAaZ g0͗/] uIBnA!ij!&]\'qL,0hCDFl1B#.^à "]]["jP|и^abb## "$VFA恡Uu1Ȣ Kd <\F]tBCe G =BDRD36mI2[5B,)dh0qp6Ј!%"DR#Їq E >2O/6Du6 Ai " :"PFaD z#yڄd&2Uh@ f%pA<:"8hDY!Or#CCLr$9c(syH7(rAY<  endstream endobj 48 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 49 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 212.4 -689.28 TD -0.0058 Tc 0 Tw (10) Tj -212.4 664.08 TD -0 Tc -0.0025 Tw (use, care should be taken that no dust particles are between the contact) Tj 0 -13.68 TD 0 Tc 0 Tw (faces.) Tj 0 -27.36 TD -0.0043 Tc (6.) Tj 18 0 TD 0 Tc -0.0033 Tw (Volumetric Measurements.) Tj ET 104.4 660.48 162.72 0.72 re f BT 104.4 634.56 TD -0.0043 Tc 0 Tw (a.) Tj 18 0 TD 0 Tc -0.0031 Tw (Cylinders and Molds.) Tj ET 122.4 633.12 127.68 0.72 re f BT 250.08 634.56 TD 0 Tc -0.003 Tw ( The volume of trimming cylinders and) Tj -163.68 -13.68 TD -0 Tc -0.0028 Tw (compaction or maximum-minimum molds should be determined either) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (by linear measurements or by the water-filling method as described) Tj T* -0.0023 Tc 0 Tw (below:) Tj 18 -27.36 TD 0.001 Tc (\(1\)) Tj 27.12 0 TD -0 Tc -0.0026 Tw (Volume by Linear Measurement.) Tj ET 131.52 564.72 197.52 0.72 re f BT 329.04 566.16 TD 0 Tc -0.0034 Tw ( Using either a vernier or mi-) Tj -242.64 -13.68 TD -0 Tc -0.0027 Tw (crometer caliper and a metal rule, determine the inside diameter and) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (height of the container. Determine the average of four equally spaced) Tj T* -0 Tc -0.0028 Tw (height measurements and the average of four equally spaced measure-) Tj T* -0 Tc -0.0028 Tw (ments of the inside diameter. Have a second technician verify all) Tj T* 0 Tc -0.003 Tw (measurements and compute the volume of the container.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (Volume by Water-Filling Method.) Tj ET 131.52 468.96 201.36 0.72 re f BT 332.88 470.4 TD -0 Tc -0.0028 Tw ( The bottom of a cylinder open) Tj -246.48 -13.68 TD -0 Tc -0.0024 Tw (at both ends should be placed on or clamped to a section of plate glass) Tj 0 -13.68 TD -0.001 Tc -0.0019 Tw (or metal and sealed against water leakage at the contact edges using) Tj T* -0 Tc -0.0022 Tw (wax, stopcock grease, or similar sealant. Fill the cylinder slightly) Tj T* -0.0008 Tc -0.0021 Tw (above its rim with distilled, deaired water and place a section of plate) Tj T* -0 Tc -0.0026 Tw (glass over the surface to eliminate the meniscus. Take care to entrap) Tj T* -0 Tc -0.0026 Tw (no air bubbles. Determine the weight of water required to fill the con-) Tj T* -0 Tc -0.0026 Tw (tainer, taking into account the temperature of the liquid in determining) Tj T* -0 Tc -0.0024 Tw (its density. At least three determinations of volume should be made.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0.0008 Tc -0.0021 Tw (Volumetric Flasks.) Tj ET 122.4 332.16 113.28 0.72 re f BT 104.4 306.24 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Volumetric flasks used in the determination of specific gravity) Tj -45.12 -13.68 TD -0.0009 Tc -0.0019 Tw (of soils should be calibrated as outlined in EM 1110-2-1906, Appen-) Tj 0 -13.68 TD -0 Tc -0.0024 Tw (dix IV. Preliminary to the calibration, the flask should be cleaned using) Tj T* -0 Tc -0.0024 Tw (a synthetic detergent, followed by several rinses with distilled water.) Tj T* -0 Tc -0.0023 Tw (It is important that the neck of the flask where the calibration mark is) Tj T* -0 Tc -0.0026 Tw (located be thoroughly clean and uniformly wetted so that a good menis-) Tj T* -0 Tc -0.0026 Tw (cus is developed by the water.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0023 Tw (In view of the calibration expense, flasks of borosilicate glass) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (\(Pyrex, Kimax\) should be used as they are much more resistant to) Tj 0 -13.68 TD -0.0009 Tc -0.002 Tw (breakage. Flasks that comply with the requirements for Type 1,) Tj T* -0 Tc -0.0026 Tw (Class B, flasks of Federal Specification NNN-F-289 \(reference 13\) are) Tj T* -0 Tc -0.0028 Tw (suitable for specific gravity testing.) Tj 18 -27.36 TD 0.0014 Tc 0 Tw (c.) Tj 18 0 TD -0 Tc -0.0027 Tw (Graduated Cylinders.) Tj ET 122.4 113.28 129.84 0.72 re f BT 252.24 114.72 TD 0 Tc -0.0029 Tw ( Graduated cylinders when used as sedi-) Tj -165.84 -13.68 TD 0 Tc -0.003 Tw (mentation jars in hydrometer analysis are of sufficient accuracy to be) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (used without calibration. Graduated cylinders used for the measurement) Tj ET endstream endobj 50 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 51 0 obj <>stream BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -175.68 -689.28 TD -0.0058 Tc 0 Tw (11) Tj -212.4 664.08 TD -0 Tc -0.0029 Tw (of volume in routine soils testing, such as the constant-head permea-) Tj 0 -13.68 TD -0 Tc -0.0024 Tw (bility test, should comply with requirements for Type 1, Style 1, cylin-) Tj T* 0 Tc -0.0032 Tw (ders of Federal Specification NNN-C-940 \(reference 12\), which speci-) Tj T* -0 Tc -0.0028 Tw (fies volume accuracies as follows:) Tj 18 -27.36 TD -0.0012 Tc -0.0017 Tw (Nominal capacity, ml) Tj 146.64 0 TD -0.0058 Tc 0 Tw (10) Tj 27.12 0 TD (25) Tj 27.12 0 TD (50) Tj 19.92 0 TD (100) Tj 27.12 0 TD (200) Tj 27.12 0 TD (250) Tj 27.12 0 TD (500) Tj 25.2 0 TD 0.0029 Tw ( 1000) Tj 44.16 0 TD 0 Tw (2000) Tj -371.52 -27.36 TD -0.0019 Tc -0.001 Tw (Maximum allowable) Tj 0 -13.68 TD -0 Tc -0.0026 Tw ( tolerance, ml) Tj 135.84 0 TD 0.0176 Tc 0 Tw (\2610.1) Tj 34.32 0 TD -0.0048 Tc (0.3) Tj 27.12 0 TD (0.4) Tj 27.12 0 TD (0.6) Tj 27.12 0 TD (1.4) Tj 27.12 0 TD (1.4) Tj 27.12 0 TD (2.6) Tj 36 0 TD (5.0) Tj 33.36 0 TD -0.005 Tc (10.0) Tj -393.12 -27.36 TD 0 Tc -0.0033 Tw (For greater accuracy, use Class A or "Certified" cylinders that meet) Tj 0 -13.68 TD 0 Tc -0.0034 Tw (the requirements for accuracy of National Bureau of Standards Circu-) Tj T* 0 Tc -0.003 Tw (lar 602 \(reference 7\), which specifies maximum tolerance in volume of) Tj T* -0 Tc -0.0025 Tw (approximately one-half that given above. Graduated cylinders selected) Tj T* -0 Tc -0.0026 Tw (as meeting the appropriate criteria should not require calibration by) Tj T* -0 Tc -0.0027 Tw (the user. If it is desired, however, calibration can be made by the fol-) Tj T* 0.0008 Tc -0.0036 Tw (lowing procedure:) Tj 18 -27.36 TD -0 Tc -0.0025 Tw (Weigh the cylinder filled to the capacity mark with distilled water.) Tj 0 -27.36 TD 0 Tc -0.003 Tw (Subtract the weight of the clean, dry cylinder.) Tj T* -0 Tc -0.0029 Tw (Determine the temperature of the water.) Tj T* 0 Tc -0.0029 Tw (Determine the volume at 20 C \(standard temperature for volumetric) Tj -18 -13.68 TD -0.0008 Tc -0.002 Tw (glassware calibration\) from the following tabulation.) Tj 0 -27.36 TD -0.0014 Tc -0.0015 Tw (Test Temp) Tj 114.96 0 TD 0.0012 Tc -0.004 Tw (Apparent Wt of) Tj 131.28 0 TD -0.0014 Tc -0.0015 Tw (Test Temp) Tj 93.84 0 TD 0.0012 Tc -0.004 Tw (Apparent Wt of) Tj -317.28 -13.68 TD /F1 12.96 Tf 0 Tc 0 Tw (E) Tj 6.48 0 TD /F0 12.96 Tf 0.0029 Tc (C) Tj ET 86.4 318.48 62.16 0.72 re f BT 194.88 319.92 TD 0 Tc -0.0029 Tw (1 liter of Water, g) Tj ET 194.88 318.48 105.6 0.72 re f BT 356.64 319.92 TD /F1 12.96 Tf 0 Tc 0 Tw (E) Tj 6.48 0 TD /F0 12.96 Tf 0.0029 Tc (C) Tj ET 333.12 318.48 62.88 0.72 re f BT 419.76 319.92 TD 0 Tc -0.0029 Tw (1 liter of Water, g) Tj ET 419.76 318.48 105.6 0.72 re f BT 112.56 306.24 TD -0.0058 Tc 0 Tw (15) Tj 116.88 0 TD -0.0053 Tc (997.93) Tj 130.56 0 TD -0.0058 Tc (21) Tj 99.12 0 TD -0.0053 Tc (996.99) Tj -346.56 -13.68 TD -0.0058 Tc (16) Tj 116.88 0 TD -0.0053 Tc (997.80) Tj 130.56 0 TD -0.0058 Tc (22) Tj 99.12 0 TD -0.0053 Tc (996.81) Tj -346.56 -13.68 TD -0.0058 Tc (17) Tj 116.88 0 TD -0.0053 Tc (997.66) Tj 130.56 0 TD -0.0058 Tc (23) Tj 99.12 0 TD -0.0053 Tc (996.61) Tj -346.56 -13.68 TD -0.0058 Tc (18) Tj 116.88 0 TD -0.0053 Tc (997.51) Tj 130.56 0 TD -0.0058 Tc (24) Tj 99.12 0 TD -0.0053 Tc (996.39) Tj -346.56 -13.68 TD -0.0058 Tc (19) Tj 116.88 0 TD -0.0053 Tc (997.36) Tj 130.56 0 TD -0.0058 Tc (25) Tj 99.12 0 TD -0.0053 Tc (996.16) Tj -346.56 -13.68 TD -0.0058 Tc (20) Tj 116.88 0 TD -0.0053 Tc (997.18) Tj -143.04 -27.36 TD -0 Tc -0.0022 Tw (The tabulation above takes into account the buoyancy of air when weigh-) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (ing with brass weights, and the coefficient of cubical expansion of glass.) Tj T* 0 Tc -0.0029 Tw (Because of their large diameter relative to height, graduated cylinders) Tj T* 0 Tc -0.0029 Tw (are not suitable for measurements when accuracy better than 1 percent) Tj T* -0 Tc -0.0029 Tw (is required.) Tj 12.72 -27.36 TD -0.001 Tc 0 Tw (d.) Tj 22.32 0 TD -0.0008 Tc -0.0021 Tw (Burettes, Pipettes, and Standpipes.) Tj ET 121.44 126.96 212.64 0.72 re f BT 334.08 128.4 TD -0.0011 Tc -0.0018 Tw ( Burettes are available in) Tj -247.68 -13.68 TD -0 Tc -0.0022 Tw (capacities from 10 to 1000 ml, but only rarely are sizes larger than) Tj 0 -13.68 TD -0.0016 Tc -0.0013 Tw (50 ml used. Pipettes are available in capacities of 0.1 to 25 ml. If a) Tj T* -0 Tc -0.0027 Tw (burette or pipette is selected having a capacity slightly in excess of the) Tj ET endstream endobj 52 0 obj 6803 endobj 53 0 obj 0 endobj 54 0 obj 0 endobj 55 0 obj <>stream  POS/2OPNcmap + * cvt &"36fpgm\ܢdglyfSJheady(6hhea^$hmtx?;loca maxp, nameoIO post0{a PprepzT 2a.2WPCO@  $$  !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~~   !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~nbl34BUKX:V)~erp,>Kp!!|HQRc!;tFYd,!@,vE %E#ah#h`D-,E %E#ah#h`D-, 8@68-, @868-,Fv Gh#Fah X %#8%6e8Y- =@9988 Fv/7?MM7MX X!XRXIXLXHXHX@XXXXDXDXf>**K>MKMKXwXpXi:iXp> = [X>X,X&Xj~XeXeXiXiXXlXBX  X-XVX/X3X3XAXAX:X@X:X?  T]LGL0  XXXXXAH@X&X&XXX4X?X8 = YXdcXPXPXjXpXjXjX#XhX\Xw`@XaXuXXX{XXXXnXXXXJXHXJX6X:XAXAX3X[XBXfX##hXkJXKX>X=ddddddddddddddddddddddddddddddddddddddddp0@ .ll z86,2@Nj lx      ( 8D |{c} 1993 WordPerfect Corporation. All Rights Reserved.DLFJOK+WPMathANormalDLFJOK+WPMathADLFJOK+WPMathA1.0 Tue May 03 14:42:14 1994DLFJOK+WPMathA{c} 1993 WordPerfect Corporation. All Rights Reserved.DLFJOK+WPMathANormalDLFJOK+WPMathADLFJOK+WPMathA1.0 Tue May 03 14:42:14 1994DLFJOK+WPMathA{c} 1993 WordPerfect Corporation. All Rights Reserved.DLFJOK+WPMathANormalDLFJOK+WPMathADLFJOK+WPMathA1.0 Tue May 03 14:42:14 1994DLFJOK+WPMathA{      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~exclamquotedbl numbersigndollarpercent ampersand quotesingle parenleft parenrightasteriskpluscommahyphenperiodslashzeroonetwothreefourfivesixseveneightninecolon semicolonlessequalgreaterquestionatABCDEFGHIJKLMNOPQRSTUVWXYZ bracketleft backslash bracketright asciicircum underscoregraveabcdefghijklmnopqrstuvwxyz braceleftbar braceright asciitildec128c129quotesinglbaseflorin quotedblbaseellipsisdagger daggerdbl circumflex perthousandScaron guilsinglleftOEc141c142c143c144 quoteleft quoteright quotedblleft quotedblrightbulletendashemdashtilde trademarkscaronguilsinglrightoec157c158 Ydieresisnbspace exclamdowncentsterlingcurrencyyen brokenbarsectiondieresis copyright ordfeminine guillemotleft logicalnotminus registeredmacrondegree plusminus twosuperior threesuperioracutemu paragraphperiodcenteredcedilla onesuperior ordmasculineguillemotright onequarteronehalf threequarters questiondownAgraveAacute AcircumflexAtilde AdieresisAringAECcedillaEgraveEacute Ecircumflex EdieresisIgraveIacute Icircumflex IdieresisEthNtildeOgraveOacute OcircumflexOtilde OdieresismultiplyOslashUgraveUacute Ucircumflex UdieresisYacuteThorn germandblsagraveaacute acircumflexatilde adieresisaringaeccedillaegraveeacute ecircumflex edieresisigraveiacute icircumflex idieresisethntildeograveoacute ocircumflexotilde odieresisdivideoslashugraveuacute ucircumflex udieresisyacutethorn ydieresis@9988EvEhDF+F+F+F+F+F+F+ F+ F+ F+ F+ F+F+F+F+F+F+F+F+F+F+F+F+F+F+F+F+F+ F+!F+"F+#F+$F+%F+&F+'F+(F+)F+*F++F+,F+-F+.F+/F+0F+1F+2F+3F+4F+5F+6F+7F+EhDEhDEhDEhDEhD endstream endobj 56 0 obj <> endobj 57 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 58 0 obj [59 0 R 60 0 R] endobj 59 0 obj <>stream q 164.64 123.84 283.2 356.88 re W n q 283.44 0 0 356.88 164.4 123.84 cm /im8 Do endstream endobj 60 0 obj <>stream Q Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 212.4 -689.28 TD -0.0058 Tc 0 Tw (12) Tj -212.4 664.08 TD -0 Tc -0.0022 Tw (volume to be measured, it will not be necessary to calibrate it before) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (use in routine and most research soils testing. Should calibration be) Tj T* -0 Tc -0.0026 Tw (desired, it is done by weighing the water metered from the apparatus.) Tj T* -0 Tc -0.0025 Tw (The piece should be cleaned before calibration so that the inside is uni-) Tj T* -0 Tc -0.0024 Tw (formly wetted. A rinse with alcohol and then distilled water is usually) Tj T* -0 Tc -0.0028 Tw (sufficient. The piece should be mounted vertically and filled with dis -) Tj T* -0 Tc -0.0023 Tw (tilled water at 20 C so that the bottom of the meniscus coincides with) Tj T* -0 Tc -0.0024 Tw (the zero mark. The water in appropriate amounts is then allowed to) Tj T* -0 Tc -0.0024 Tw (flow into a glass weighing bottle or an Erlenmeyer flask \(of known) Tj T* 0 Tc -0.0029 Tw (weight\) and weighed. The term standpipe as used herein refers to) Tj T* -0 Tc -0.0024 Tw (small-bore \(maximum 10 mm\) transparent tubes of glass or rigid plas-) Tj T* -0.0008 Tc -0.0021 Tw (tic, having no graduation markings to indicate volume. To calibrate a) Tj T* -0 Tc -0.0021 Tw (standpipe, an arrangement such as that shown in Fig. 8 is used. The) Tj T* -0 Tc -0.0024 Tw (standpipe is held vertically, and its bottom end is connected, using a) Tj 126.24 -437.76 TD -0.0013 Tc -0.0016 Tw (Fig. 8. Calibration of standpipe) Tj ET endstream endobj 61 0 obj <>/Filter/CCITTFaxDecode/Height 1487/Length 9347/Name/im8/Subtype/Image/Type/XObject/Width 1181>>stream &v k,3_*>W@Hj(/[3[^  G6 A4 /g|ZR?@ ⟐6k_^]  f A]hd j?8֗] z{^?@ ]?<5 AO8 @>Yh-q]~@ ޿^{ / !^; Z!p_{^@ 㕞#AAd2qF@pZa?^0].jAlW x k!=Wx/eI,5{~?a d$#Rv. V޹ I?ӒS\r89Ր[wsDDl%_@gML # 7r t^@p||59 ٯ2ҠC=mU z`i>{7 dEU_t0k3}Hkh.2 *iȊ ɘBp[Eisa#Cbx3)MN@'Oa_P^ᩊAx 9 d +IrGx)KI\'aH41d4~4ECxgCaAҝj/*C?/̑.C3ePȣ *CLr&؀hu]8( Tp"ed]aŃeqi\DèA *h ;(sZVCO]DgbF' - N4@,LE8 @"Feh4 El "«6%P>!LB#Y9݁C C=8};ڒܮN^ _;[$^ Q09N |0F(> a0C!@;6 zO3][zBYx+H@P\R@Sa2OA 4L x9B}0@.' d]2I)6Ͱf/iF$T@fX5 |"ɠf:9vxB?D5u3l@h0A#y7X i"0 2 H ARC$֎dH6 -+aԍ6D@BL|2a< N@PlDxX>O!@AMp=d0?HG̎ od@`'245;AC( Ő4 qn6zjI46hCAYV%X ĒuMo f9C*aRo f n9[V nO4 8%v %}'O$CTsY.XҼ+M5}5wޘ^ h Wû<:~ xo>Al< шp" aC 9C9Hj0* S~d4K솋 YAɍlSgPxr:Gv 9ߤdp a=tLI ȷ> El{^[7 >Alֹ._]AOM$kTJ0 'v 5o80@gA8Ӳ1g_x@_ >PXӯoH#@{p 0-H2CpObLDY BO{J OUS4PoڈWJy5J2]&-vܜPa%KYpàad !Wlh6OY&)#^M""BB۷TmzU4)Bhz6УTp ZGaI=(E GS ațN D ٨`ԁ^'QKԁV3k!d$iWRYIc ^âa3_L: sQqfb 8 °MBy`3Zz{wi |px`x_@ C$4=daC$bј_1 m_J? 'z A_C&ߟ ]wd4а2G(r> ?#=_ m zș=Y @_[ h(pd' !r!>D1nGED$x'<gԃ oI QGڅ8 (6[)AUL{k>xꎂ[\x|=vCV X0 5|(5tb3T 5_!"G/i\"_Tֱ>} U $Њ\H0G G ڐA!B @p^X4c \^VO6+o$ƗuQ$'an4҆h72S>>! %fdFPM2rC ӅGC]{E Lb_>^aCNAh/كD (R#t!~ai^k7`C} mƠ^C$3mHb)a4$U~B{kd5_ea\?iyKMGApm%=C|?Աߝ_N#4@w恔x22AlxIOvAmZ <xfC ~ g<<'Np3N! J4, -k3Kߪiz Pf_Zmo ?HO݂#=?)~fU@ín)_g5a_t?PկA胎SuOݥWI¿ʸY ~BIhEs^?kBG?N+CUfufZD:k}} Z1 _xh= C _K^+i _ D3xMx3WW),D_A@u"B?*r !E? u2_^ 'H6/bm}7W_5:DQ?k6_> m/Ir2EBx3  }R5___/?K@ڵș~_z A?:@ma5_!Xhk ]d -yh >@^Qo f~DqU?Z \VD9a @?=AO/}D$XK5#\'Byn^ wnAJ0 &!i8mAju;K c8]Zyﴚk􈃂C6|~TC_kjfϯX&]UP_N/^S.Q=$??Mzp;'7%Rb?_Ő|&D{k!W^g7]OԆ}k[<}􅦽Fv!o! z]H'^/߷[m} .+¯@ȖkOBuDh ]28?] ]AWqU {DŽ*^Mc!#S^?C8#$~zVE:A.ў? {?k H{T!w_C h"~tD55:H 4{6pw~O{&,&O,C`M{!h~WW$A/@ HM;Gv?/??a&__dliw-!2~D; *ORpN(+H?|'+!k"ނЎ W0Fg/jEC+_ t#fƿy sW=?} W~5{z;k_ q޽?![2ehq4a~4?O=r\3__!LkZ_"p"cAHN52ml"{-B""@3~FAv&ٱ| ]_h8r /5٨ ?uaW 7avFaaavѢ %2C > x&Z!٦a _iZk T_D2!%?Bw4 \ +v0˷GdX7 M f jl&@Uů[&4N# `M6,-}؛. kd)[ l&a! 7 "Dpȷ2`r$p5 2s_漆@\gAIdB/*Ȼ |། RVl2 Ԋ z 2khU-rAu~^O-E5gP& `DFlb㇟/L4Va:0IajJDh2+rCPOt 0#PgN^@ŜA\AD5{[ aȲ%<L p_z $o (mZ!@ Z_ qD * rD?a`#*ݡ L4` nN4ZL"(:K $ Ern!Hy2 R͘оR @ aŻ(tw°F0 |oP _oj7ݦ|?A2p9+6 2 P-D1G$m5ta}Qp J"bApoN֘=ʀ􅅴ʭPt|]U; b}d!^r\kZJF"+iN@NȮ-J a >wFG*f8\*j+kWBvV.WFz~ɘj5*"wpCa 3pT* 0ɍ40Ad @?ivt@ .0rt=n?zd8d94A\/|]06p!`x_GmA0q Pa;Aj;eiX=Rv$rpJA7, 1wR|UM;W523Bd(2CNI H5h?BCV4ɀP 9N!0PkTynAibr᳠E1..tӰG0V`! *$tl! bEY۰&0Mšt? V O"?MY !eLCϮiWAA?U]=5^YL;O_fT-b g6!}~- T>ꛓD Јf`Eox{Ap8)A|!|¦)ACT KUjp6DHqqAg !RC6Ce>ߣPjZa.:# V!`aI  S»Qd\qa pN[ ЄnЧd@dd0aȑh5,pamNon >ici5MPpҐ_UT$RՂ[8(D6fCB: -TT=3RT=AuB*j;!@#AA*D%Uݐ0`0!SӐL$a\=s(p 4$'@e$|zl{DLTvD4]@ЪL'MtDJñ 8y,"'lEݭDK? B!0d42+!bl7b0si#A R AYٜ 4m c(#@ (P1xT 2crNӞ#M܉mDD0l3TCؑ~jR'" CC,WM4!\wL ) % cl X BV`K|3 ^knt;{#m#u iwv[HdmjDYTޚvlpR0#G! [Q$܆Hi^"I aN BYGa,ed4aHTT l&RFm7 DFc40B#Fl3`Ș3wC>V'bBc>048l_B %<C(DG ᦇ @048ۡ(@t@,z S䉈Md50}dTÒۻHT} D٩ ]u 4 .4 $)Q6 Gh\r dxYeX$AVmAg<"8A׳O(p` ޜ9Qb *@*ߐ \(DF!<'r|\>9 x$n!ڐ,*IH i`MLDA_%usPqMaȐ*)yP@>uO0DA_q`j + x5(|DnAd6ƈ2ѰB@FpCfH0`ةn|!vKŻAqʲnBo x-.@͒dPa0IzDwi!;;d @"< R]&DY0 KNY (r  P!`&Z0ABOhu0F )-RO4 qא.=#lR* *I$.ȳiOҲ!";My .M0ՂL dj!g x}Ղ!KEN;RAHC5L;=/6Ca@AXjAmAƚ 7o5P0B*(ysHвZ +aa2x bPhr27iLDS8 AOa;r} ̗Œ #Q Ћ'?$_8duXuK!1!ËA*@gЋ™.>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 63 0 obj <>stream q 282.24 559.2 48 30.96 re W n q 48.24 0 0 30.96 282 559.2 cm BI /W 201 /H 129 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?||~???xp`????????????? EI Q Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (13) Tj -215.04 664.08 TD -0 Tc -0.0026 Tw (short length of flexible transparent plastic tubing, to a pipette or burette) Tj 0 -13.68 TD -0.0009 Tc -0.002 Tw (having approximately the same inside diameter. The pipette, tubing,) Tj T* -0 Tc -0.0022 Tw (and standpipe are filled with water so that the level is at the zero mark) Tj T* -0 Tc -0.0027 Tw (on the pipette. The water level in the standpipe is recorded either by) Tj T* -0.0008 Tc -0.0021 Tw (using a scale alongside or taking a reading with a cathetometer. The) Tj T* -0 Tc -0.0024 Tw (pipette is then raised so that the water level coincides with the bottom) Tj T* -0 Tc -0.0022 Tw (mark on the pipette. The distance the water level was raised in the) Tj T* -0 Tc -0.0027 Tw (standpipe is then measured. The area of the standpipe is then deter-) Tj T* -0 Tc -0.0026 Tw (mined from the equation) Tj 0 -54.72 TD 0.0009 Tc 0 Tw (where) Tj 12.72 -27.36 TD 0.0019 Tc -0.0048 Tw (a = area of the standpipe, sq cm) Tj 0 -27.36 TD 0.0014 Tc -0.0043 Tw (V = volume of water measured by the pipette, ml) Tj T* 0.0013 Tc -0.0042 Tw (L = distance the water moved up the standpipe, cm) Tj -12.72 -27.36 TD -0 Tc -0.0026 Tw (Since standpipe diameters may not be uniform, the measurements should) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (be made at two or three points along its length and the results averaged.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (7.) Tj 18 0 TD 0 Tc -0.0033 Tw (Weight and Force Measurements.) Tj ET 104.4 386.88 202.32 0.72 re f BT 306.72 388.32 TD -0 Tc -0.0027 Tw ( Two of the most frequent meas-) Tj -220.32 -13.68 TD -0 Tc -0.0027 Tw (urements made in the soils laboratory are weight and force. Weight is) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (the force of gravity acting on a mass and is measured by using balances) Tj T* -0 Tc -0.0028 Tw (or scales.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (a.) Tj 18 0 TD -0.001 Tc -0.0019 Tw (Balances and Scales.) Tj ET 122.4 318.48 125.04 0.72 re f BT 104.4 292.56 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0.0008 Tc -0.0021 Tw (Balances and scales measure weight by comparing equal masses:) Tj -45.12 -13.68 TD -0 Tc -0.0025 Tw (one unknown or to be weighed and the other, known \(calibrated weights\).) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (It is beyond the scope of this manual to present procedures for calibrat-) Tj T* -0 Tc -0.0022 Tw (ing all available types of balances. A few of the types in common use in) Tj T* -0.0009 Tc -0.002 Tw (soils laboratories are two-pan general laboratory, two-pan analytical,) Tj T* -0 Tc -0.0026 Tw (Harvard trip, triple beam, torsion \(knife edges replaced by steel bands\),) Tj T* -0 Tc -0.0027 Tw (single-pan optical projection, single-pan "fan" type, and single-pan) Tj T* -0 Tc -0.0025 Tw (digital with electronic null indicator. Balances are calibrated using) Tj T* -0 Tc -0.0026 Tw (weights of known accuracy with a precision suitable for the balance be-) Tj T* -0 Tc -0.0026 Tw (ing calibrated. National Bureau of Standards \(NBS\) tolerances for) Tj T* -0 Tc -0.0027 Tw (weights are, as outlined in Circular 547 \(reference 9\), as shown in the) Tj T* -0.0009 Tc -0.002 Tw (tabulation on the following page. The NBS should calibrate weights if) Tj T* -0 Tc -0.0023 Tw (suitable testing facilities for this purpose are not conveniently available) Tj T* -0 Tc -0.0024 Tw (elsewhere. Weights for calibration should be sent to NBS, ATTN: Mass) Tj T* -0.0011 Tc -0.0018 Tw (and Volume Section \(2.06\), Washington, D. C. 20234. Care should be) Tj T* -0 Tc -0.0023 Tw (taken that tables and floors on which the balances are placed do not de-) Tj T* -0 Tc -0.0025 Tw (flect while weighings are being made. 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EI Q Q q 87.12 597.6 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 597.6 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID = EI Q Q q 87.12 597.36 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 597.36 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 87.12 597.12 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 597.12 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0 EI Q Q q 87.12 596.88 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 596.88 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 87.12 596.64 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 596.64 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID   EI Q Q q 87.12 596.4 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 596.4 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 87.12 596.16 444.24 0.24 re W n q 444.72 0 0 0.24 87.12 596.16 cm BI /W 1853 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 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EI Q q 400.08 0 0 0.24 87.12 593.76 cm BI /W 1667 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 378 0 0 0.24 87.12 593.52 cm BI /W 1575 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 355.68 0 0 0.24 87.12 593.28 cm BI /W 1482 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 333.36 0 0 0.24 87.12 593.04 cm BI /W 1389 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 311.28 0 0 0.24 87.12 592.8 cm BI /W 1297 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 288.96 0 0 0.24 87.12 592.56 cm BI /W 1204 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 266.88 0 0 0.24 87.12 592.32 cm BI /W 1112 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 244.56 0 0 0.24 87.12 592.08 cm BI /W 1019 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 222.24 0 0 0.24 87.12 591.84 cm BI /W 926 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 200.16 0 0 0.24 87.12 591.6 cm BI /W 834 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 177.84 0 0 0.24 87.12 591.36 cm BI /W 741 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 155.52 0 0 0.24 87.12 591.12 cm BI /W 648 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 133.44 0 0 0.24 87.12 590.88 cm BI /W 556 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 111.12 0 0 0.24 87.12 590.64 cm BI /W 463 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 88.8 0 0 0.24 87.12 590.4 cm BI /W 370 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 66.72 0 0 0.24 87.12 590.16 cm BI /W 278 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 44.4 0 0 0.24 87.12 589.92 cm BI /W 185 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 22.32 0 0 0.24 87.12 589.68 cm BI /W 93 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (14) Tj -215.04 513.6 TD -0 Tc -0.0027 Tw (single-pan balances, which may have optical projection systems for the) Tj 0 -13.68 TD -0.001 Tc -0.0019 Tw (smaller weights.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0.001 Tc -0.0019 Tw (To calibrate two-pan balances \(general laboratory, analytical, or) Tj -45.12 -13.68 TD 0 Tc -0.0029 Tw (single- or double-beam Harvard trip\), first level the instrument and) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (then balance the beam; next, check the accuracy of the sliding weight on) Tj T* -0 Tc -0.0023 Tw (the beam by placing the appropriate weight in the left pan and moving) Tj T* -0 Tc -0.0024 Tw (the sliding weight to the extreme right position \(1 g, 10 g, etc.\). The) Tj T* -0 Tc -0.0029 Tw (balance should remain balanced if the rider or sliding weight is correct.) Tj T* -0 Tc -0.0027 Tw (The accuracy of the larger weights made with these balances depends) Tj T* 0 Tc -0.0031 Tw (upon the accuracy of the weights used in the right pan. However, it is) Tj T* -0 Tc -0.0027 Tw (good practice to test the operation of the balance at half- and full-rated) Tj T* -0.0011 Tc -0.0018 Tw (loads. The beam should remain balanced when weights-say 100 or) Tj T* -0.0011 Tc -0.0017 Tw (200 g-are placed in each pan. To calibrate a triple-beam balance) Tj T* 0 Tc -0.0031 Tw (\(Fig. 9\), the procedure is similar to that preceding except there are) Tj T* 0 Tc -0.0033 Tw (three riders \(sliding weights\) to check for accuracy. Some triple-beam) Tj T* -0.0008 Tc -0.0021 Tw (balances have auxiliary weights that are hung on the beam to increase) Tj T* 0 Tc -0.003 Tw (the capacity. The accuracy of these should be checked by placing them) Tj T* -0 Tc -0.0027 Tw (on the beam and putting the corresponding weight in the pan of the bal-) Tj T* -0 Tc -0.0025 Tw (ance. These weights should be used only on the balance they were cali-) Tj T* -0 Tc -0.0025 Tw (brated with and never exchanged to another balance without recalibra-) Tj T* -0 Tc -0.0022 Tw (tion. To calibrate a single-pan balance using optical projection, level) Tj T* -0 Tc -0.0023 Tw (the balance and adjust the optical scale to zero. Add a calibrated weight) Tj T* -0.0015 Tc -0.0013 Tw (to the pan equal to 1/4, 1/2, 3/4, and total capacity of the optical scale.) Tj T* 0 Tc -0.0029 Tw (If the balance reading does not correspond to the calibration weight on) Tj T* -0 Tc -0.0027 Tw (the pan, it may be corrected by making adjustments according to the) Tj T* 0 Tc -0.0033 Tw (manufacturer\222s instructions. If no instructions are supplied with the) Tj T* -0.0009 Tc -0.002 Tw (balance, a trained repairman is needed. For all calibrations of balances) Tj T* -0 Tc -0.0026 Tw (and scales, heat sources, air currents, and vibrations detrimental to the) Tj T* -0 Tc -0.0024 Tw (process must be eliminated.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0.0013 Tc (Deadweights.) Tj ET 122.4 126.96 81.36 0.72 re f BT 203.76 128.4 TD -0.0008 Tc -0.0021 Tw ( Deadweights are pieces of metal of suitable shape) Tj -117.36 -13.68 TD -0.0009 Tc -0.0019 Tw (and known weight \(Fig. 10\). The smaller weights are usually made of) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (brass or aluminum; the larger ones are made of cast iron, steel, or) Tj T* 0 Tc -0.0031 Tw (lead. They are used either directly or in conjunction with lever systems) Tj ET endstream endobj 66 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 67 0 obj <>stream q 181.44 0 0 0.24 127.92 658.32 cm BI /W 756 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 204.24 0 0 0.24 127.92 658.08 cm BI /W 851 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 227.04 0 0 0.24 127.92 657.84 cm BI /W 946 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 249.6 0 0 0.24 127.92 657.6 cm BI /W 1040 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 272.4 0 0 0.24 127.92 657.36 cm BI /W 1135 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 294.96 0 0 0.24 127.92 657.12 cm BI /W 1229 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 317.76 0 0 0.24 127.92 656.88 cm BI /W 1324 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 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EI Q Q q 127.92 641.28 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 641.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID   EI Q Q q 127.92 641.04 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 641.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @ EI Q Q q 127.92 640.8 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 640.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ` EI Q Q q 127.92 640.56 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 640.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.92 640.32 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 640.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.92 640.08 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 640.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x EI Q Q q 127.92 639.84 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 639.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8? EI Q Q q 127.92 639.6 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 639.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|? EI Q Q q 127.92 639.36 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 639.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|? EI Q Q q 127.92 639.12 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 639.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.92 638.88 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 638.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.92 638.64 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 638.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.92 638.4 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 638.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.92 638.16 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 638.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.92 637.92 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 637.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???? EI Q Q q 127.92 637.68 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 637.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|?? EI Q Q q 127.92 637.44 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 637.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x?? EI Q Q q 127.92 637.2 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 637.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??? EI Q Q q 127.92 636.96 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 636.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.92 636.72 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 636.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.92 636.48 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 636.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.92 636.24 362.88 0.24 re W n q 363.36 0 0 0.24 127.92 636.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 636 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 636 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 635.76 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 635.76 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ EI Q Q q 127.68 635.52 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 635.52 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?> EI Q Q q 127.68 635.28 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 635.28 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~ EI Q Q q 127.68 635.04 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 635.04 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.68 634.8 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 634.8 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 634.56 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 634.56 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 634.32 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 634.32 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 634.08 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 634.08 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 633.84 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 633.84 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 633.6 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 633.6 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 633.36 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 633.36 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 633.12 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 633.12 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 632.88 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 632.88 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ EI Q Q q 127.68 632.64 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 632.64 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ EI Q Q q 127.68 632.4 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 632.4 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID | EI Q Q q 127.68 632.16 363.12 0.24 re W n q 363.6 0 0 0.24 127.68 632.16 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 631.92 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 631.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 631.68 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 631.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 631.44 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 631.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 631.2 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 631.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 630.96 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 630.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 630.72 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 630.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 630.48 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 630.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 630.24 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 630.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 630 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 630 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 629.76 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 629.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 629.52 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 629.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 629.28 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 629.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 629.04 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 629.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 628.8 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 628.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 628.56 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 628.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.68 628.32 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 628.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.68 628.08 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 628.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.68 627.84 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 627.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.68 627.6 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 627.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q Q q 127.68 627.36 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 627.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0? EI Q Q q 127.68 627.12 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 627.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0? EI Q Q q 127.68 626.88 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 626.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0? EI Q Q q 127.68 626.64 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 626.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p? EI Q Q q 127.68 626.4 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 626.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x EI Q Q q 127.68 626.16 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 626.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 625.92 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 625.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 625.68 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 625.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 625.44 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 625.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 625.2 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 625.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 624.96 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 624.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 624.72 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 624.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 624.48 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 624.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 624.24 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 624.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 624 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 624 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 623.76 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 623.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @ EI Q Q q 127.68 623.52 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 623.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 623.28 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 623.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 623.04 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 623.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 622.8 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 622.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.68 622.56 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 622.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.68 622.32 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 622.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 622.08 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 622.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 621.84 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 621.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 621.6 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 621.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 621.36 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 621.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 621.12 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 621.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 620.88 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 620.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~? EI Q Q q 127.68 620.64 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 620.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8 EI Q Q q 127.68 620.4 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 620.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 620.16 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 620.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 619.92 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 619.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 619.68 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 619.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 619.44 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 619.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 619.2 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 619.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 618.96 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 618.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 618.72 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 618.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 618.48 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 618.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 618.24 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 618.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 618 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 618 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 617.76 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 617.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 617.52 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 617.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 617.28 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 617.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 617.04 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 617.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 616.8 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 616.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 616.56 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 616.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 616.32 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 616.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 616.08 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 616.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 615.84 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 615.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 615.6 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 615.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 127.68 615.36 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 615.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 615.12 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 615.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 614.88 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 614.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 614.64 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 614.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 614.4 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 614.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 614.16 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 614.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |? EI Q Q q 127.68 613.92 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 613.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 613.68 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 613.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 613.44 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 613.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 127.68 613.2 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 613.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 612.96 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 612.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.68 612.72 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 612.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.68 612.48 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 612.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ EI Q Q q 127.68 612.24 363.12 0.24 re W n q 363.36 0 0 0.24 127.68 612.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 612 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 612 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 611.76 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 611.76 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 611.52 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 611.52 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 611.28 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 611.28 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 611.04 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 611.04 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.44 610.8 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 610.8 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 127.44 610.56 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 610.56 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 610.32 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 610.32 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 127.44 610.08 363.36 0.24 re W n q 363.6 0 0 0.24 127.44 610.08 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 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EI Q q 363.36 0 0 0.24 127.2 571.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 363.36 0 0 0.24 127.2 571.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q q 363.36 0 0 0.24 127.2 571.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 363.36 0 0 0.24 127.2 570.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p EI Q q 363.36 0 0 0.24 127.2 570.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 363.36 0 0 0.24 127.2 570.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 363.36 0 0 0.24 127.2 570.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q q 363.36 0 0 0.24 127.2 570 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q q 363.36 0 0 0.24 127.2 569.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?C EI Q q 363.36 0 0 0.24 127.2 569.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 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EI Q Q q 126.96 526.8 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 526.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???? EI Q Q q 126.96 526.56 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 526.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ߁?08? EI Q Q q 126.96 526.32 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 526.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  /|?? EI Q Q q 126.96 526.08 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 526.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8<?~? EI Q Q q 126.96 525.84 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 525.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x? >p?~?? EI Q Q q 126.96 525.6 363.12 0.24 re W n q 363.36 0 0 0.24 126.72 525.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??xp??? 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EI Q Q q 126.96 507.84 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 507.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~ ???yp>>|  EI Q Q q 126.96 507.6 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 507.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`?ÿ? ??0x?>`>>|@ EI Q Q q 126.96 507.36 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 507.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ? 8 0?>| EI Q Q q 126.96 507.12 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 507.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??? ?9?1|?8?0| EI Q Q q 126.96 506.88 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 506.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>~?9 8|?x| EI Q Q q 126.96 506.64 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 506.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~? ǘ?z?0 EI Q Q q 126.96 505.44 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 505.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <8??>??>?`a  EI Q Q q 126.96 505.2 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 505.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?o>?@~0?8 EI Q Q q 126.96 504.96 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 504.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID =?>s  >|8< EI Q Q q 126.96 504.72 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 504.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <ǀ??>~ ?8?> EI Q Q q 126.96 504.48 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 504.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|?<<>;u????> 0 EI Q Q q 126.96 504.24 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 504.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~??<<|?><x<;<>?>0??{ EI Q Q q 126.96 504 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 504 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >?<|>?0p?88? EI Q Q q 126.96 503.76 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 503.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p<?x~?88? EI Q Q q 126.96 503.52 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 503.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID Ǐp<8p?880 EI Q Q q 126.96 503.28 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 503.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID }?| ?|? EI Q Q q 126.96 503.04 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 503.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 88p?x ?p  <?` EI Q Q q 126.96 502.8 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 502.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8|@?ߏ?`>8 EI Q Q q 126.96 502.56 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 502.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p0?? 8 EI Q Q q 126.96 502.32 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 502.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >~?< ?p EI Q Q q 126.96 502.08 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 502.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0??x/??` EI Q Q q 126.96 501.84 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 501.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 1???x?~ EI Q Q q 126.96 501.6 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 501.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `? |?????8|@1~ EI Q Q q 126.96 501.36 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 501.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p??>??{0ǀp`< EI Q Q q 126.96 501.12 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 501.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |_χ????|o?~ EI Q Q q 126.96 500.88 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 500.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  |?8>?p??>>< EI Q Q q 126.96 500.64 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 500.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |??x>?>?p EI Q Q q 126.96 500.4 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 500.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |?>a~?>8p EI Q Q q 126.96 500.16 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 500.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8?||?8x8 EI Q Q q 126.96 499.92 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 499.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p>x?p8<x8 EI Q Q q 126.96 499.68 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 499.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |x? x@8>0<| EI Q Q q 126.96 499.44 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 499.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x?80???}x0 p>| EI Q Q q 126.96 499.2 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 499.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>?8?8| EI Q Q q 126.96 498.96 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 498.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <?<0?><?!| EI Q Q q 126.96 498.72 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 498.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID π?? ?0?|??|0q| EI Q Q q 126.96 498.48 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 498.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???>???`p?xx| EI Q Q q 126.96 498.24 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 498.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >@??> `8<~> EI Q Q q 126.96 498 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 498 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID =>`<??><8|> EI Q Q q 126.96 497.76 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 497.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ><p?`> EI Q Q q 126.96 497.52 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 497.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???>x?@ EI Q Q q 126.96 497.28 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 497.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>x?x<@?? 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EI Q Q q 126.96 493.92 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 493.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID | ????? >>  EI Q Q q 126.96 493.68 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 493.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~?????? 1`8???>?`8> EI Q Q q 126.96 493.44 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 493.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???x??x0 EI Q Q q 126.96 493.2 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 493.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8??;? 80x EI Q Q q 126.96 492.96 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 492.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `0|??>>8?1|?0;  EI Q Q q 126.96 492.72 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 492.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? >?<x0~xp>0?x EI Q Q q 126.96 492.48 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 492.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0 >0??q{8 <0?x|q` EI Q Q q 126.96 492.24 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 492.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8<0898?}?<8 w EI Q Q q 126.96 492 362.88 0.24 re W n q 363.36 0 0 0.24 126.48 492 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 80??8???~>p? 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EI Q Q q 126.96 483.6 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 483.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID a~p?p < ??<????` EI Q Q q 126.96 483.36 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 483.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `?p<}xq>?? p EI Q Q q 126.96 483.12 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 483.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x0x<0@ 0~??p@<0 EI Q Q q 126.96 482.88 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 482.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x?8 |??<  EI Q Q q 126.96 482.64 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 482.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~~??? 0>??9? EI Q Q q 126.96 482.4 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 482.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?????? p???p8> EI Q Q q 126.96 482.16 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 482.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ??>??0?|? p< EI Q Q q 126.96 481.92 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 481.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ??~???>p|?  EI Q Q q 126.96 481.68 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 481.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@?;?x  ? >?9 EI Q Q q 126.96 481.44 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 481.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? 0p=|p<> >x? EI Q Q q 126.96 481.2 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 481.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 00???<x ~?x> EI Q Q q 126.96 480.96 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 480.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID !<?|?|?| EI Q Q q 126.96 480.72 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 480.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 1|??>?>p >x?|8x EI Q Q q 126.96 480.48 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 480.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @y?~?~x0x EI Q Q q 126.96 480.24 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 480.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID y??0????<y>0 EI Q Q q 126.96 480 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 480 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <8???0????g??|q? EI Q Q q 126.96 479.76 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 479.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~8?s?? x?x? ?~0A  EI Q Q q 126.96 479.52 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 479.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID q?p~0?`>`>< EI Q Q q 126.96 479.28 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 479.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? >>{pÀ <<>? EI Q Q q 126.96 479.04 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 479.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8|>~??|~?~s>? EI Q Q q 126.96 478.8 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 478.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8<>????0x>x EI Q Q q 126.96 478.56 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 478.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID g8||p`~??00??x? EI Q Q q 126.96 478.32 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 478.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  xx?>`>?@< 8o~18x@ EI Q Q q 126.96 477.6 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 477.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0?@~C>`πÁ<`<?Àp EI Q Q q 126.96 477.12 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 477.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0|>?`>~8p<xA EI Q Q q 126.96 476.88 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 476.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~`x?!``~0px88 EI Q Q q 126.96 476.64 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 476.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID   s~`x~x@`p88 EI Q Q q 126.96 476.4 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 476.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID G|@xx~pp8p8 EI Q Q q 126.96 476.16 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 476.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID > x<|#>??a8s?p?? EI Q Q q 126.96 475.92 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 475.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `x`p~<??0>x;??<?8 EI Q Q q 126.96 475.68 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 475.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `pc?<@0x<?8 EI Q Q q 126.96 475.44 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 475.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID pp?p`<p??>|@ p<< EI Q Q q 126.96 475.2 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 475.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p>x? ?`|~?a8|? EI Q Q q 126.96 474.96 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 474.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @q?~yx/??3>? EI Q Q q 126.96 474.72 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 474.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~??|8??? EI Q Q q 126.96 474.48 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 474.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p~`???? EI Q Q q 126.96 474.24 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 474.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @~? EI Q Q q 126.96 474 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 474 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >q{~? EI Q Q q 126.96 473.76 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 473.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???~~? EI Q Q q 126.96 473.52 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 473.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??|? EI Q Q q 126.96 473.28 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 473.28 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 473.04 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 473.04 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 472.8 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 472.8 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 472.56 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 472.56 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 472.32 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 472.32 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 472.08 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 472.08 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 471.84 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 471.84 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID _? EI Q Q q 126.96 471.6 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 471.6 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 126.96 471.36 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 471.36 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ( EI Q Q q 126.96 471.12 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 471.12 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 470.88 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 470.88 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID _? EI Q Q q 126.96 470.64 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 470.64 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 470.4 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 470.4 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 470.16 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 470.16 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? @ EI Q Q q 126.96 469.92 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 469.92 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 126.96 469.68 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 469.68 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 469.44 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 469.44 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 469.2 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 469.2 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 468.96 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 468.96 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 468.72 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 468.72 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 468.48 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 468.48 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 468.24 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 468.24 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 468 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 468 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 467.76 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 467.76 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 467.52 362.64 0.24 re W n q 363.36 0 0 0.24 126.24 467.52 cm BI /W 1514 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 126.96 467.28 362.64 0.24 re W n q 363.6 0 0 0.24 126 467.28 cm BI /W 1515 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 341.04 0 0 0.24 148.56 467.04 cm BI /W 1421 /H 1 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/W 659 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 164.88 0 0 0.24 173.76 301.68 cm BI /W 687 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 171.84 0 0 0.24 173.76 301.44 cm BI /W 716 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 178.8 0 0 0.24 173.76 301.2 cm BI /W 745 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 185.52 0 0 0.24 173.76 300.96 cm BI /W 773 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 192.48 0 0 0.24 173.76 300.72 cm BI /W 802 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 199.44 0 0 0.24 173.52 300.48 cm BI /W 831 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 206.4 0 0 0.24 173.52 300.24 cm BI /W 860 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 213.36 0 0 0.24 173.52 300 cm BI /W 889 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 220.08 0 0 0.24 173.52 299.76 cm BI /W 917 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 227.04 0 0 0.24 173.52 299.52 cm BI /W 946 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 234 0 0 0.24 173.52 299.28 cm BI /W 975 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 240.72 0 0 0.24 173.52 299.04 cm BI /W 1003 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 80 EI Q q 247.68 0 0 0.24 173.52 298.8 cm BI /W 1032 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x EI Q q 254.4 0 0 0.24 173.52 298.56 cm BI /W 1060 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x EI Q q 261.36 0 0 0.24 173.52 298.32 cm BI /W 1089 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 0 EI Q q 268.32 0 0 0.24 173.52 298.08 cm BI /W 1118 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 173.52 297.84 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 297.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 297.6 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 297.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 297.36 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 297.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 297.12 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 297.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 296.88 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 296.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 296.64 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 296.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 296.4 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 296.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 173.52 296.16 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 296.16 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.52 295.92 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 295.92 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID / EI Q Q q 173.52 295.68 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 295.68 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @? EI Q Q q 173.52 295.44 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 295.44 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  K? EI Q Q q 173.52 295.2 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 295.2 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 173.52 294.96 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 294.96 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.52 294.72 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 294.72 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.52 294.48 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 294.48 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.52 294.24 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 294.24 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?< EI Q Q q 173.52 294 273.36 0.24 re W n q 275.04 0 0 0.24 173.52 294 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |  EI Q Q q 173.28 293.76 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 293.76 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~ EI Q Q q 173.28 293.52 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 293.52 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~ EI Q Q q 173.28 293.28 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 293.28 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 293.04 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 293.04 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 292.8 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 292.8 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 292.56 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 292.56 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 292.32 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 292.32 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 292.08 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 292.08 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 173.28 291.84 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 291.84 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.28 291.6 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 291.6 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.28 291.36 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 291.36 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 173.28 291.12 273.6 0.24 re W n q 275.28 0 0 0.24 173.28 291.12 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID # EI Q Q q 173.28 290.88 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 290.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x@ EI Q Q q 173.28 290.64 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 290.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`x EI Q Q q 173.28 290.4 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 290.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 173.28 290.16 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 290.16 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??? EI Q Q q 173.28 289.92 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 289.92 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|@x? EI Q Q q 173.28 289.68 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 289.68 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID < x8x? EI Q Q q 173.28 289.44 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 289.44 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8p8p?p EI Q Q q 173.28 289.2 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 289.2 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<?? ?> EI Q Q q 173.28 288.96 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 288.96 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?????? EI Q Q q 173.28 288.72 273.6 0.24 re W n q 275.04 0 0 0.24 173.28 288.72 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????  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EI Q q 275.04 0 0 0.24 171.12 225.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID '??>?@ EI Q q 171.12 225.6 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 225.6 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@?@/ EI Q Q q 171.12 225.36 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 225.36 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?sq0?g0 EI Q Q q 171.12 225.12 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 225.12 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??` ?x??? EI Q Q q 171.12 224.88 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 224.88 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>|x?xp ?s EI Q Q q 171.12 224.64 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 224.64 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?p?|0x?y‘x EI Q Q q 171.12 224.4 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 224.4 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID p?~?x?~ EI Q Q q 171.12 224.16 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 224.16 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?88?~?x??1 EI Q Q q 171.12 223.92 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 223.92 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<0 ???~3 EI Q Q q 171.12 223.68 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 223.68 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 3?|lg? EI Q Q q 171.12 223.44 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 223.44 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|p??À8? EI Q Q q 171.12 223.2 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 223.2 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <y???8g8? EI Q Q q 171.12 222.96 275.04 0.24 re W n q 275.28 0 0 0.24 170.88 222.96 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~??!8? EI Q Q q 171.12 222.72 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 222.72 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@o~? EI Q Q q 171.12 222.48 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 222.48 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??8p>? EI Q Q q 171.12 222.24 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 222.24 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <??? < , EI Q Q q 171.12 222 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 222 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<?| 8?| EI Q Q q 171.12 221.76 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 221.76 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `?>p{?8x?>? EI Q Q q 171.12 221.52 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 221.52 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `???`1?8|><< EI Q Q q 171.12 221.28 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 221.28 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???038<? EI Q Q q 171.12 221.04 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 221.04 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??8 EI Q Q q 171.12 220.8 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 220.8 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 1?  EI Q Q q 171.12 220.56 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 220.56 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?`??????? EI Q Q q 171.12 220.32 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 220.32 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?? EI Q Q q 171.12 219.84 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 219.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~c???f EI Q Q q 171.12 219.6 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 219.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ? @???"? EI Q Q q 171.12 219.36 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 219.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????????? EI Q Q q 171.12 219.12 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 219.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??~8??A EI Q Q q 171.12 218.88 274.8 0.24 re W n q 275.04 0 0 0.24 170.88 218.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???`~??~? EI Q Q q 171.12 218.4 274.8 0.24 re W n q 275.28 0 0 0.24 170.64 218.4 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID | 0????G; EI Q Q q 171.12 218.16 274.8 0.24 re W n q 275.28 0 0 0.24 170.64 218.16 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ǟ<pp~? ?> EI Q Q q 171.12 217.92 274.8 0.24 re W n q 275.28 0 0 0.24 170.64 217.92 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8?>C?? EI Q Q q 171.12 217.68 274.8 0.24 re W n q 275.28 0 0 0.24 170.64 217.68 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>??????xO ?? EI Q Q q 171.12 216 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 216 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?p?p??0|< EI Q Q q 171.12 215.76 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 215.76 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?????~ 00 EI Q Q q 171.12 215.52 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 215.52 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~??0? EI Q Q q 171.12 215.28 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 215.28 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??}|?xp EI Q Q q 171.12 215.04 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 215.04 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 98<p|7 EI Q Q q 171.12 214.8 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 214.8 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <??x EI Q Q q 171.12 214.56 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 214.56 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |x????? EI Q Q q 171.12 214.32 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 214.32 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~?0@< EI Q Q q 171.12 214.08 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 214.08 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8<?p?0? EI Q Q q 171.12 213.84 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 213.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???x~?p? EI Q Q q 171.12 213.6 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 213.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <π<?8x@x<<p? EI Q Q q 171.12 213.36 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 213.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?π<yp? EI Q Q q 171.12 213.12 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 213.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x>?1??|? EI Q Q q 171.12 212.88 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 212.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8C?y? EI Q Q q 171.12 212.64 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 212.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? ?? EI Q Q q 171.12 212.4 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 212.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ~A|p?`>@? EI Q Q q 171.12 212.16 274.56 0.24 re W n q 275.04 0 0 0.24 170.64 212.16 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????<?>? EI Q Q q 171.12 211.92 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 211.92 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???x` EI Q Q q 171.12 211.68 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 211.68 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?}?߀| EI Q Q q 171.12 210.48 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 210.48 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???????? EI Q Q q 171.12 210.24 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 210.24 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????~{ EI Q Q q 171.12 210 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 210 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??09 EI Q Q q 171.12 209.76 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 209.76 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >x `??7G EI Q Q q 171.12 209.52 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 209.52 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `??p???>y EI Q Q q 171.12 209.28 274.56 0.24 re W n q 275.28 0 0 0.24 170.4 209.28 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@`9< p ???8p |?8? EI Q Q q 171.12 209.04 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 209.04 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~c=cx~ ???8 EI Q Q q 171.12 208.8 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 208.8 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >} >ŀ8 EI Q Q q 171.12 208.56 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 208.56 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ϟ0<~>x0 EI Q Q q 171.12 208.32 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 208.32 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???x?????|y EI Q Q q 171.12 208.08 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 208.08 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??||x? EI Q Q q 171.12 207.84 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 207.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <0???????? EI Q Q q 171.12 207.6 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 207.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID <\?|3>??< EI Q Q q 171.12 207.36 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 207.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @<???| EI Q Q q 171.12 207.12 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 207.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID >?p?>p?? EI Q Q q 171.12 206.88 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 206.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID |c?> |???8 ?? EI Q Q q 171.12 206.64 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 206.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?|?x88<?? EI Q Q q 171.12 206.4 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 206.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?<??8?>?? EI Q Q q 171.12 206.16 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 206.16 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?yxC~0 EI Q Q q 171.12 205.92 274.32 0.24 re W n q 275.04 0 0 0.24 170.4 205.92 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x|?? 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EI Q Q q 171.12 204 274.32 0.24 re W n q 275.28 0 0 0.24 170.16 204 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ????8<?? EI Q Q q 171.12 203.76 274.32 0.24 re W n q 275.28 0 0 0.24 170.16 203.76 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??8q0?? EI Q Q q 171.12 203.52 274.32 0.24 re W n q 275.28 0 0 0.24 170.16 203.52 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ??p?_~?? EI Q Q q 171.12 203.28 274.32 0.24 re W n q 275.28 0 0 0.24 170.16 203.28 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `<>>? ??  EI Q Q q 171.12 203.04 274.32 0.24 re W n q 275.28 0 0 0.24 170.16 203.04 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  ????  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EI Q Q q 171.12 201.12 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 201.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?x?P|? EI Q Q q 171.12 200.88 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 200.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ???@?p0<`?`??# EI Q Q q 171.12 200.64 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 200.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?>???@<9?? EI Q Q q 171.12 200.4 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 200.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8??#? EI Q Q q 171.12 200.16 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 200.16 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?||>3?x? EI Q Q q 171.12 199.92 274.08 0.24 re W n q 275.04 0 0 0.24 170.16 199.92 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?8~>0? ? 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EI Q Q q 171.12 172.08 273.12 0.24 re W n q 275.04 0 0 0.24 169.2 172.08 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 171.84 273.12 0.24 re W n q 275.04 0 0 0.24 169.2 171.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 171.6 273.12 0.24 re W n q 275.04 0 0 0.24 169.2 171.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 171.36 273.12 0.24 re W n q 275.04 0 0 0.24 169.2 171.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 171.12 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 171.12 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 170.88 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 170.88 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 170.64 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 170.64 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 170.4 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 170.4 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 171.12 170.16 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 170.16 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ? EI Q Q q 171.12 169.92 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 169.92 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 169.68 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 169.68 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 169.44 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 169.44 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x? EI Q Q q 171.12 169.2 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 169.2 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?~<~ EI Q Q q 171.12 168.96 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 168.96 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ?@ EI Q Q q 171.12 168.72 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 168.72 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 168.48 273.12 0.24 re W n q 275.28 0 0 0.24 168.96 168.48 cm BI /W 1147 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 168.24 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 168.24 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 168 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 168 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 167.76 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 167.76 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 167.52 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 167.52 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q Q q 171.12 167.28 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 167.28 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 167.04 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 167.04 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 166.8 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 166.8 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 166.56 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 166.56 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 166.32 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 166.32 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 166.08 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 166.08 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 165.84 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 165.84 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 165.6 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 165.6 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 165.36 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 165.36 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 165.12 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 165.12 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 164.88 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 164.88 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 164.64 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 164.64 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 171.12 164.4 272.88 0.24 re W n q 275.04 0 0 0.24 168.96 164.4 cm BI /W 1146 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q Q q 268.32 0 0 0.24 175.68 164.16 cm BI /W 1118 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 261.36 0 0 0.24 182.64 163.92 cm BI /W 1089 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 254.64 0 0 0.24 189.36 163.68 cm BI /W 1061 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 247.68 0 0 0.24 196.32 163.44 cm BI /W 1032 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 240.72 0 0 0.24 203.28 163.2 cm BI /W 1003 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 234 0 0 0.24 210 162.96 cm BI /W 975 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 227.04 0 0 0.24 216.96 162.72 cm BI /W 946 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 220.32 0 0 0.24 223.68 162.48 cm BI /W 918 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 213.36 0 0 0.24 230.64 162.24 cm BI /W 889 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 206.4 0 0 0.24 237.6 162 cm BI /W 860 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 199.68 0 0 0.24 244.32 161.76 cm BI /W 832 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 192.48 0 0 0.24 251.28 161.52 cm BI /W 802 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 185.52 0 0 0.24 258.24 161.28 cm BI /W 773 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 178.8 0 0 0.24 264.96 161.04 cm BI /W 745 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 171.84 0 0 0.24 271.92 160.8 cm BI /W 716 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 165.12 0 0 0.24 278.64 160.56 cm BI /W 688 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 158.16 0 0 0.24 285.6 160.32 cm BI /W 659 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 151.2 0 0 0.24 292.56 160.08 cm BI /W 630 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 144.48 0 0 0.24 299.28 159.84 cm BI /W 602 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 137.52 0 0 0.24 306.24 159.6 cm BI /W 573 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (15) Tj -109.44 390.48 TD -0.0013 Tc -0.0016 Tw ( Fig. 9. Calibration of auxiliary weight) Tj 48.24 -13.68 TD -0.001 Tc -0.0019 Tw (on triple-beam balance) Tj 5.28 -300.96 TD -0.002 Tc -0.0009 Tw (Fig. 10. Deadweights) Tj ET endstream endobj 68 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 69 0 obj [70 0 R 71 0 R] endobj 70 0 obj <>stream q 347.76 0 0 230.64 134.88 414.24 cm /im9 Do endstream endobj 71 0 obj <>stream Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (16) Tj -215.04 664.08 TD 0 Tc -0.003 Tw (\(consolidation and direct shear tests\) or hydraulic systems \(dead load) Tj 0 -13.68 TD 0 Tc -0.0034 Tw (testers for pressure gages\) to apply forces to test specimens, or as) Tj T* 0 Tc -0.0033 Tw (primary standards for the calibration of other force-measuring equip-) Tj T* -0 Tc -0.0022 Tw (ment \(proving rings, load cells, etc., Fig. 11\). Deadweights can be) Tj 129.6 -273.6 TD -0.0014 Tc -0.0015 Tw (Fig. 11. Load ring and load cell) Tj -129.6 -27.36 TD 0 Tc -0.0031 Tw (calibrated to the desired degree of accuracy using scales or load cells) Tj 0 -13.68 TD 0 Tc -0.0031 Tw (having the required accuracy. While the force deadweights apply is due) Tj T* -0 Tc -0.0024 Tw (to gravity and is therefore not a constant but varies with elevation, this) Tj T* -0 Tc -0.0027 Tw (variation can be neglected for all but the most exacting research.) Tj 18 -27.36 TD 0.0014 Tc 0 Tw (c.) Tj 18 0 TD -0.001 Tc -0.0018 Tw (Load Frames and Rings.) Tj ET 122.4 291.12 146.64 0.72 re f BT 269.04 292.56 TD 0 Tc -0.0029 Tw ( Load frames and rings are often used) Tj -182.64 -13.68 TD 0 Tc -0.0031 Tw (for measuring loads or forces in laboratory tests. When measuring) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (loads, care should be taken that the capacity of the frame or ring is not) Tj T* 0 Tc -0.0035 Tw (exceeded. In the event overloading occurs during a test, the frame or) Tj T* -0 Tc -0.0027 Tw (ring should be recalibrated to determine if there has been a permanent) Tj T* -0 Tc -0.0028 Tw (change in the calibration. If rings are subjected to both tension and) Tj T* 0 Tc -0.003 Tw (compression during the conduct of a test, they need to be so calibrated.) Tj T* -0 Tc -0.0028 Tw (It is usually sufficiently accurate to use the increasing load table to de-) Tj T* -0 Tc -0.0022 Tw (termine the loads in a test after maximum has been reached and loads) Tj T* 0 Tc -0.0031 Tw (are decreasing.) Tj 18 -27.36 TD -0.001 Tc 0 Tw (d.) Tj 18 0 TD 0 Tc -0.0029 Tw (Proving Rings.) Tj ET 122.4 140.64 88.32 0.72 re f BT 210.72 142.08 TD 0 Tc -0.0031 Tw ( Proving rings used as primary standards for the) Tj -124.32 -13.68 TD -0 Tc -0.0025 Tw (calibration of rings and frames on equipment should be calibrated either) Tj ET endstream endobj 72 0 obj <>/Filter/CCITTFaxDecode/Height 961/Length 11969/Name/im9/Subtype/Image/Type/XObject/Width 1449>>stream &T0xO"AgA…H3X'>xf M݆IXCC\va1‡ %NTXq~ fd2 D+ߴ)8$eC f V fXA0}ld|";Ka25fWw5c=z|6{qr<#M~Pr`; mr`ﰛtZ `yO,ax{|#|O#kP˷ O@2O fdf k!3/@O\L3Ld f s f |B$"m{ ѕtr`ēp;#"Ș~SX̎.(B\3|My1pd X+ J`0 ` .鄘2ǰ `n0i`2Aj`,2p2<5-^o Hփ!k ayRv@싱rȔCv@ Id `\2yIqB9d v`̅$3$Kh*T3" ;"0m3 ] 2S Ap"`˵YdBAKd"@5fd HD0B 2`C ia3͉xM0D4 fRb `nn@l&"n4 G m+@n!kPAl4C ?d5D[ ai# 02POO 0@]؈dp2AHj%>8hpPGeNA _W`0R3 E%q<0#M k#; xdԃ [ h4ߡx> Xm@4 A B#Cӈdݥi 9ôg)Pm , S1D!|0۝XGFZA y=' MZ{ ]FAD+U@\- xu~ 1 ӨmHf *r xW@%nARJf}0 CZk@>Y!XH0N-CO0xtK2XEWl7h4 .N3a >a;"as[o@:16Ԙ[A= Wc$i .o0N h DD=F0(ۆx&0dBdJ6A2q5\.e& 7ѫp᫶CfJG?!'5.A2! 4H@fCҙ [H5!Ë<$T \ B9@B4 3AAװ >*C,`2pi8hDU34J"C &@\2+ $Vh3 ,w !_d i-o'Ґc xJ}h&L H!kF&l[;%G4)C0!5DgfΒ@s1D _Hl6Y6\a„:!OIqI4n up64+1H5XׅQ2h"ʃD1ha)n}V|&t!uN(t솛>+]d[}t6Avg=DY< ;#3l&%AGigӴ!NAOKl4ۭax'[TJaz mpՐʻdB C\ kz #Nj`yFNLQeA"y0Duŗ!us"L,†hS gqd+b-DGspduV2  ܙ| ! <ub6O香DbdxAbXAFS5m5i4QaŊTu%!#5鍱 }j-2u D`%86='FE]Ȏ3_ 1 3t 'Hv|ނ!<%9OrjzxJZ$?MK0lAm4ٮS (CD1 lQ앃MM$D<%; azm oAA M&zP ƈd ᓷ.>&ׅ#d_I86&_Eݪa=^#Pf!Ǥ)4\ d, kE=͉# 200o-ā"\! 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"8 0@k <ῄJ]?L4@Ȑ->!!#gT`Zu VJA"q/  pi@І+ִdI9U1`DP@5A`4ˏ Ӧ!\E$!nΕ t \?~"dvfnE|$@ WaNȘzE+*CY xD[qj#4ߐ0 \MJn:\1,# UBeqt ( |߂b &>"|<8Z HZt[.4A$  2Ű<mdPͿa+AHF(0"$GlK Đd' t@c| OaLXVd.5#Ȯ=-BOt"I> J,"VʼxS_0M j :%6HjBρb Bix& %چ48Hf+Ն!:j" [D<@fB<5URAbAT&FF{#PcuRdžRàDB0m RoB ܆H3a0a`ά7 [ !Ń'-ڂ n :rt! l0ah dᑉC9Vd"4`*C$ 2Ua[!fXQd 0̅-k*5)V84[[zA a8gd Al8I\ 2 3ι!Z 0Y0Yʒ :ȗB& fɎB;L!i5UʩH/ 0`CPzۃ LhD0@F9 S 0BA0a T8MA{kV tC%&  TT^A\5 R i2A% ^ˠhXR H)X`eD436m89 , jWȠѩdݾ5U[(,jBIr `-[Q6 )6CL@09<x,O>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 74 0 obj <>stream BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (17) Tj -215.04 664.08 TD -0.0013 Tc -0.0016 Tw (by the NBS or a facility having calibration capabilities equal to NBS.) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (The calibration of such rings is beyond the scope of this manual.) Tj T* 0 Tc -0.0033 Tw (Specifications of the NBS for proving rings for calibration purposes) Tj T* 0 Tc -0.003 Tw (are contained in NBS Circular 454 \(reference 15\). Quoting from NBS) Tj T* -0 Tc -0.0025 Tw (Circular 454, "Proving rings are usually calibrated for 10 approxi-) Tj T* -0 Tc -0.0023 Tw (mately equally spaced loads from 10 percent capacity load to capacity) Tj T* -0 Tc -0.0022 Tw (load. A preliminary preload to capacity is desirable to stabilize the) Tj T* 0 Tc -0.0032 Tw (no-load reading of the ring." While this reference applies to rings to) Tj T* -0 Tc -0.0022 Tw (be calibrated for use as primary standards, it is also applicable gen-) Tj T* -0 Tc -0.0024 Tw (erally to the calibration of load rings or frames that are installed on) Tj T* -0 Tc -0.0025 Tw (equipment. Load rings and frames may be calibrated using the proce-) Tj T* -0 Tc -0.0027 Tw (dure given in paragraph f below.) Tj 18 -27.36 TD -0.0014 Tc 0 Tw (e.) Tj 18 0 TD -0.0014 Tc -0.0014 Tw (Load Cells.) Tj ET 122.4 523.68 66.96 0.72 re f BT 189.36 525.12 TD -0 Tc -0.0025 Tw ( Load cells used in soil testing are normally of the) Tj -102.96 -13.68 TD -0 Tc -0.0024 Tw (strain-gage type. The strain-gage type is essentially a load ring or) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (frame on which several strain gages are cemented. The load can be) Tj T* 0 Tc -0.0032 Tw (accurately determined from the change in electrical resistance it) Tj T* -0 Tc -0.0024 Tw (causes in the gages. Strain-gage-type load cells may be used as pri-) Tj T* -0 Tc -0.0029 Tw (mary standards for the calibration of any load-measuring device or) Tj T* -0 Tc -0.0027 Tw (equipment if their calibration meets previously stated proving ring) Tj T* 0 Tc -0.003 Tw (calibration requirements. Rather complex electronic equipment is re-) Tj T* -0 Tc -0.0028 Tw (quired for their operation. The load cells themselves, however, are) Tj T* -0 Tc -0.0028 Tw (rugged and hold a constant calibration over long periods of time.) Tj T* -0 Tc -0.0027 Tw (Another type of load cell is the hydraulic load cell which is essentially) Tj T* -0 Tc -0.0026 Tw (a flexible liquid-filled capsule to which is attached a Bourdon-type) Tj T* 0 Tc -0.0029 Tw (pressure gage. This type of load cell is self-contained and requires no) Tj T* 0 Tc -0.003 Tw (external source of power or complex apparatus; however, it usually) Tj T* 0 Tc -0.0031 Tw (does not measure with as high a degree of accuracy as the electronic) Tj T* -0.0008 Tc -0.002 Tw (load cell. Also, it is not adaptable to automatic recording as is the) Tj T* -0 Tc -0.0029 Tw (electronic load cell. Load cells are calibrated using a procedure sim-) Tj T* -0 Tc -0.0023 Tw (ilar to that given in the following paragraph.) Tj 18 -27.36 TD 0 Tc 0 Tw (f.) Tj 18 0 TD -0 Tc -0.0025 Tw (Procedure for Calibration of Load Rings, Frames, and Load) Tj ET 122.4 263.76 354.48 0.72 re f BT 86.4 251.52 TD -0.0009 Tc 0 Tw (Cells.) Tj ET 86.4 250.08 33.6 0.72 re f BT 120 251.52 TD -0 Tc -0.0023 Tw ( The device should be calibrated at approximately the tempera-) Tj -33.6 -13.68 TD -0 Tc -0.0028 Tw (ture at which it will be most often used. The following procedure should) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (be used in calibrating a load ring or frame. \(A similar procedure is) Tj T* -0 Tc -0.0028 Tw (followed in calibrating load cells, except that instead of recording de-) Tj T* 0 Tc -0.003 Tw (flection, output voltage is recorded for strain-gage-type load cells, and) Tj T* -0 Tc -0.0026 Tw (Bourdon gage readings are made in calibrating hydraulic cells. Initial) Tj T* -0 Tc -0.0027 Tw (loading to the rated capacity of the load cell is not required.\)) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (Zero the deflection indicator.) Tj -27.12 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Using a primary standard for load measurement \(proving ring,) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (deadweights, or load cell\), first load the load ring or frame to its) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (rated capacity. 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EI Q q 444.48 0 0 0.24 86.88 147.12 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID 8 EI Q q 444.48 0 0 0.24 86.88 146.88 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID @ EI Q q 444.48 0 0 0.24 86.88 146.64 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.48 0 0 0.24 86.88 146.4 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ` EI Q q 444.48 0 0 0.24 86.88 146.16 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID x??=axh EI Q q 444.48 0 0 0.24 86.88 145.92 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `?`?0>@ EI Q q 444.48 0 0 0.24 86.88 145.68 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID O?@ EI Q q 444.48 0 0 0.24 86.88 145.44 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID c EI Q q 444.48 0 0 0.24 86.88 145.2 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 144.96 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 144.72 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 144.48 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 144.24 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID `???8 ? 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EI Q q 444.48 0 0 0.24 86.88 143.52 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID ƀ@< EI Q q 444.48 0 0 0.24 86.88 143.28 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 143.04 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 142.8 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID  EI Q q 444.48 0 0 0.24 86.88 142.56 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.48 0 0 0.24 86.88 142.32 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.48 0 0 0.24 86.88 142.08 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.48 0 0 0.24 86.88 141.84 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.48 0 0 0.24 86.88 141.6 cm BI /W 1852 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 444.24 0 0 0.24 86.88 141.36 cm BI /W 1851 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 399.84 0 0 0.24 86.88 141.12 cm BI /W 1666 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 355.44 0 0 0.24 86.88 140.88 cm BI /W 1481 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 311.28 0 0 0.24 86.88 140.64 cm BI /W 1297 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 266.88 0 0 0.24 86.88 140.4 cm BI /W 1112 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 222.48 0 0 0.24 86.88 140.16 cm BI /W 927 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 178.08 0 0 0.24 86.88 139.92 cm BI /W 742 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 133.68 0 0 0.24 86.88 139.68 cm BI /W 557 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 89.28 0 0 0.24 86.88 139.44 cm BI /W 372 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 44.88 0 0 0.24 86.88 139.2 cm BI /W 187 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q q 0.48 0 0 0.24 86.88 138.96 cm BI /W 2 /H 1 /BPC 1 /D [ 1 0 ] /CS /DeviceGray ID EI Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (18) Tj -215.04 664.08 TD 0 Tc -0.003 Tw (dial gage is operating properly since such gages often need cleaning) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (and oiling to function smoothly. Loading may be accomplished by any) Tj T* -0 Tc -0.0027 Tw (convenient means.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (Unload the load ring or frame.) Tj -27.12 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD 0.0008 Tc -0.0037 Tw (Re-zero the deflection indicator.) Tj -27.12 -27.36 TD 0.001 Tc 0 Tw (\(5\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Repeat steps \(1\), \(2\), \(3\), and \(4\) until the zero reading on the) Tj -45.12 -13.68 TD 0 Tc -0.0031 Tw (deflection indicator becomes constant. \(It is often necessary to wait for) Tj 0 -13.68 TD 0 Tc -0.003 Tw (a minute or two after the release of the load for the deflection indicator) Tj T* 0 Tc -0.0034 Tw (to come to rest.\)) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(6\)) Tj 27.12 0 TD 0 Tc -0.0031 Tw (Place a load of one-tenth capacity of the device, and record the) Tj -45.12 -13.68 TD 0 Tc -0.0031 Tw (deflection reading.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(7\)) Tj 27.12 0 TD 0 Tc -0.0031 Tw (Continue step \(6\) until the capacity of the device is reached.) Tj -27.12 -27.36 TD 0.001 Tc 0 Tw (\(8\)) Tj 27.12 0 TD 0 Tc -0.0031 Tw (Remove the load and record the no-load reading of the indicator.) Tj -27.12 -27.36 TD 0.001 Tc 0 Tw (\(9\)) Tj 27.12 0 TD -0 Tc -0.0026 Tw (Repeat steps \(6\), \(7\), and \(8\) for two additional runs and average) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (the deflection readings for the three runs at each load. Table 2 gives) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (typical load-ring data including computation of calibration factors \(rati) Tj T* 0 Tc -0.0036 Tw (of load to corresponding deflection\).) Tj 58.8 -41.04 TD -0.001 Tc -0.0019 Tw (Table 2. Observed Deflections Under Calibrated Loads) Tj -40.8 -232.56 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0028 Tw (If it is desired to determine the hysteresis, applied loads are) Tj -45.12 -13.68 TD 0 Tc -0.003 Tw (decreased in decrements similar to the increments used in the loading) Tj 0 -13.68 TD 0.0008 Tc -0.0037 Tw (schedule, and the corresponding deflections are recorded.) Tj ET endstream endobj 77 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 78 0 obj [79 0 R 80 0 R] endobj 79 0 obj <>stream q 444.96 0 0 204.24 86.4 372.24 cm /im10 Do endstream endobj 80 0 obj <>stream Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (19) Tj -215.04 664.08 TD -0 Tc -0.0026 Tw (The calibration factors are plotted for a 50-lb compression load ring in) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (Fig. 12. The calibration factor for load rings in compression decreases) Tj T* -0 Tc -0.0027 Tw (with increasing load, and for a load ring in tension increases with in-) Tj T* -0 Tc -0.0027 Tw (creasing load. In using the ring, the load is computed by multiplying) Tj T* 0 Tc -0.0031 Tw (the ring deflection by the calibration factor, which is read from the cal-) Tj T* -0 Tc -0.0029 Tw (ibration graph. For frequently used rings, it is preferable to compute) Tj T* -0 Tc -0.0022 Tw (a table of ring deflection versus load \(Table 3\). Such a table is much) Tj T* -0 Tc -0.0027 Tw (easier to read, and the possibility of error in reading is much less than) Tj T* 0 Tc -0.003 Tw (when a graph of load versus deflection is used.) Tj 42.24 -259.92 TD -0 Tc -0.0022 Tw (Fig. 12. Calibration factors for a 50-lb compression load ring) Tj -24.24 -27.36 TD -0.0012 Tc 0 Tw (g.) Tj 18 0 TD 0 Tc -0.0031 Tw (Inspection of Knife Edges in Lever Systems.) Tj ET 122.4 304.8 264 0.72 re f BT 386.4 306.24 TD 0.0009 Tc -0.0037 Tw ( The accuracy .of) Tj -300 -13.68 TD 0 Tc -0.0029 Tw (force application by a lever system should be determined for new) Tj 0 -13.68 TD 0 Tc -0.003 Tw (equipment before being used in testing. The continuance of accuracy) Tj T* -0 Tc -0.0028 Tw (of force application by a lever system to a large extent depends upon) Tj T* 0 Tc -0.0029 Tw (the condition of the knife edges employed. The design of satisfactory) Tj T* -0 Tc -0.0024 Tw (knife edges involves a compromise between capacity and sensitivity.) Tj T* -0 Tc -0.0023 Tw (The sensitivity of a knife edge increases as the angle between the two) Tj T* 0 Tc -0.003 Tw (planes forming the edge decreases. The capacity of a knife-edge in-) Tj T* -0 Tc -0.0026 Tw (creases as the angle between the two planes forming the edge increases.) Tj T* -0 Tc -0.0029 Tw (To prevent deformation under load, knife edges should be made of hard) Tj T* -0 Tc -0.0022 Tw (materials; for large loads, the material must also be of high strength.) Tj T* 0 Tc -0.0032 Tw (High-strength alloy steels are often used in knife-edge construction.) Tj T* 0 Tc -0.0029 Tw (The hardness may be increased by nitriding or case-hardening, which) Tj T* 0 Tc -0.0032 Tw (forms a thin, very hard layer on the surface of the knife edge. The) Tj T* -0 Tc -0.0026 Tw (condition of knife edges can be most readily determined by visual) Tj ET endstream endobj 81 0 obj <>/Filter/CCITTFaxDecode/Height 851/Length 8496/Name/im10/Subtype/Image/Type/XObject/Width 1854>>stream &  !A)& D'a=4 I$ӄia|p&䑕mf4Ym!*Wz8d09A xAK =UH3TԁF?#t` 썇&B5yk!tN> "9 Ȗ"3Dr. ̓AqY#h#f\00,4GDr# 0BѢ'Dr;l)%&GR \,fHd@j _'= x.0E"" #` 9 eY8ki=4C 5 FdyRI߽ ȀR~4`a4B80~ G la ^`́! )RI$J$_}}:y {x 5@?l'^-0`x,4ox~2\ok6x2솨׿C6ۆ! 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[ `?B__+_w ^0<akd~ =/ x 4woa: +_(p7!?<^_{CB? xQ0z?5Lg r 3rpc[ 2 UL 4tӿ߯!~TPAq!2Ay~d@f   Prc9Cs.&9Pw? !c9C d:ablZ!r YE&^ 0RCQ_,:2>G39*!"acXDÄ!,Aq{Q߯P(kq{}X rY.! `a͢8S`U D2,X6q!{As8BD o YpPQcxjETa[, Ilԡ܁"" @peOAU L O\!vp2LԈxDDC!B"" a6 aC6 Gp@`p6_z =#aᑵc_\O޾@_k./?k<  @ClGN x3W9r~~xu'd ><@`܁u_ joh< g~o᚟ @~ R_kd }^poI$ ]$K3Bwqu?/ <x?!I`L?0 /w脫? 7!fC6:!0Pxi 2?}M4N:Y_S L;ɀhwwAI̬223` 9: לoq`$(E@(+RRB H&@ u=91d!9P &k mH9[{і#DaGDto"-A ,jjcS'Rcs0Ds#6pnAH5|Hd}42E7q ,T A ?]@xl#ᑀxc@o  x.3  ? xe__oᦟ~8o_ a0c5Z<uQ׃'5_ ?I$TK rB??0DaA6A_a׆a2$ W?kXZ_>D1 ?C/5w7d) TH 0M4v@+Pp<[Q<=]fDk  xh(rh HG6 +z $G-Y"NPB̃]_s4Gˑ\B9莈Dtiu>adU}2#Y9 CVu_Sa}?I": cKxI\0| qȎ}2d!A#22:;֎yNadl)aUCTd^:hE+ vw!V@!fDxFNds#Y_.h#pa?a'X` i70 \?p<@?a P+_2 2 M0o0RI$I$PK`!:׮~D/ xj' Faߐ ``A G ' TӺcT~AOU{kjW TG3Gg!Ῡ?̒G#ȋڧݽ)nf#|4#pFC܉3 xdp& !9rЧ.)P0E M3Y7Tr# 8❎kFb-W^}iь#hk/t" yG1ZkcG xnAC9A`&9C9 q97QVC]`~%%=(r2B!>+7Zi_"", ձ@5Gh t`CKd莎"8`#hZa0PЈhD3Xp@ {fb3Z[h>C)-=[___?___~ -6_ ?wZ__uۿ_X!~2&h'?v =0=Ak2 )0G - kCwv@ʡ! `tM1!tqtP6 c9UC  3HIAGD|DGGB GGC# q T t2c9fj~Sg`PgU$~#"= J)%AVIʙ{!j mN"" 菑ٴhjEDFm5.4 (AhEyĊd2ֈ5O(Ь"q#r (rG",;nq  C,(r װdܧ* g * { ݦ hHS'+B5""RO!09 d >" d2 ȾC [!AYq!n 0 5 E0@ d_!EK5jadP x ^^MnMNkvM0 >/ProcSet[/PDF/Text/ImageB]/XObject<>>>/Rotate 0/Type/Page>> endobj 83 0 obj <>stream q 612 0 0 792 0 0 cm /Im0 Do Q BT 0 0 0 rg /TT0 12.96 Tf -0.0027 Tc 86.4 743.52 Td (EM 1110-2-1909)Tj -0.0024 Tc 0 -15.36 TD (1 Dec 70)Tj -0.0058 Tc 215.04 -689.28 Td (20)Tj 0 Tc -0.0024 Tw -192.96 664.08 Td (Table 3. Ring Deflection Versus Load for a 50-lb Compression Ring)Tj ET BT /Suspect <>BDC 0 g /T1_0 1 Tf 0.05 Tc 0 Tw 3 Tr 11.3587 0 0 9.8 90.91 673.92 Tm (Deflection )Tj EMC /Suspect <>BDC 11.3894 0 0 9.8 93.31 663.85 Tm (Divisions )Tj EMC /Suspect <>BDC 13.0368 0 0 10 292.18 664.09 Tm (Cometed )Tj EMC /Suspect <>BDC 11.1743 0 0 10 348.66 664.09 Tm (Load)Tj /T1_1 1 Tf 0 Tc 6.2 0 0 6.2 374.2 661.68 Tm (1 )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.9394 0 0 10 382.23 664.09 Tm (lb )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 170.77 648.72 Tm (0 )Tj EMC /Suspect <>BDC 3.882 -0.024 Td (1 )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 7.8195 0 0 12.6 250.15 648.97 Tm (z. )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 287.64 648.24 Tm (3 )Tj EMC ET BT /T1_0 1 Tf 10.2 0 0 10.2 325.1556 648.9744 Tm (4 )Tj /T1_2 1 Tf 12.6 0 0 12.6 363.88 648.72 Tm (s )Tj /T1_0 1 Tf 10.2 0 0 10.2 401.87 648.48 Tm (6 )Tj 3.696 0.048 Td (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.4 0 0 10.4 475.26 648.24 Tm (8 )Tj EMC ET BT /T1_0 1 Tf 10.2 0 0 10.2 513.48 648.48 Tm (9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.2 0 0 10.2 121.086 633.5982 Tm (0 )Tj EMC /Suspect <>BDC 4.682 -0.024 Td (0 )Tj EMC /Suspect <>BDC 0.05 Tc 10.2982 0 0 10.2 208.45 633.6 Tm (0.1 )Tj EMC ET BT /T1_2 1 Tf -0.035 Tc 11.7731 0 0 12.6 247.82 633.85 Tm (o.z. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.6595 0 0 10.2 286.21 633.36 Tm (0.3 )Tj EMC /Suspect <>BDC 10.8402 0 0 10.2 323.89 633.6 Tm (0.4 )Tj EMC /Suspect <>BDC 10.6595 0 0 9.7 362.05 633.6 Tm (0.5 )Tj EMC /Suspect <>BDC 10.4788 0 0 10.2 399.97 633.36 Tm (0.6 )Tj EMC /Suspect <>BDC 10.8402 0 0 10.2 437.65 633.36 Tm (0.7 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 10.8255 0 0 9.9 473.57 633.36 Tm (0.8 )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.0179 Tc 11.2 0 0 11.2 512.04 633.36 Tm (0.9 )Tj EMC /Suspect <>BDC 0.05 Tc 10.5457 0 0 10.2 114.83 623.04 Tm (10 )Tj EMC /Suspect <>BDC 11.0747 0 0 10.2 168.34 623.04 Tm (1.0 )Tj EMC ET BT /T1_0 1 Tf 10.6993 0 0 10.2 208.19 623.29 Tm (1.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 9.8773 0 0 10.2 247.82 623.29 Tm (1.Z. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 11.0747 0 0 10.2 285.7 623.29 Tm (1.3 )Tj 10.887 0 0 10.2 323.86 623.53 Tm [(1.4 )-1783(1.5 )]TJ 6.966 -0.024 Td (1.6 )Tj 12.0132 0 0 10.2 437.34 623.29 Tm (1.1 )Tj 10.887 0 0 10.2 473.38 623.04 Tm (1.8 )Tj 10.6993 0 0 10.2 511.79 623.04 Tm (1.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 11.7694 0 0 15.1 114.65 613.21 Tm (zo )Tj EMC /Suspect <>BDC -0.0071 Tc 9.7 0 0 9.7 168.66 612.97 Tm (2..0 )Tj EMC /Suspect <>BDC 0.0085 Tc 10.2 0 0 10.2 208.05 612.97 Tm (Z.1 )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 10.3016 0 0 12.6 248.01 613.21 Tm (z..z. )Tj EMC /Suspect <>BDC /T1_0 1 Tf 9.6467 0 0 10.2 285.81 613.21 Tm (Z..4 )Tj EMC ET BT /T1_2 1 Tf 12.3769 0 0 12.6 323.63 613.45 Tm (z..s )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.0074 Tc 10.2 0 0 10.2 361.38 613.45 Tm (2..6 )Tj EMC /Suspect <>BDC -0.0231 Tc 3.741 0 Td (2..7 )Tj EMC /Suspect <>BDC -0.035 Tc 11.3364 0 0 15.2 437.22 612.97 Tm (z..e )Tj EMC /Suspect <>BDC 9.4859 0 0 10.2 473.25 612.72 Tm (Z..9 )Tj EMC /Suspect <>BDC 0.05 Tc 11.1492 0 0 10.2 511.55 613.21 Tm (3.0 )Tj EMC /Suspect <>BDC -0.0202 Tc 11.2 0 0 11.2 114.35 602.65 Tm (30 )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.7837 0 0 10.2 168.11 602.41 Tm (3.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.0171 Tc 10.2 0 0 10.2 207.72 602.41 Tm (3.2. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.7837 0 0 10.2 247.55 602.65 Tm (3.3 )Tj 3.516 0.024 Td (3.4 )Tj /T1_2 1 Tf 0.0297 Tc 11.2 0 0 11.2 323.41 602.65 Tm (3.5 )Tj /T1_0 1 Tf 0.05 Tc 11.332 0 0 10.2 361.07 603.36 Tm (3.6 )Tj 11.1492 0 0 10.2 399.23 603.13 Tm (3.7 )Tj 10.7837 0 0 10.2 437.15 602.65 Tm (3.8 )Tj 3.338 -0.024 Td (3.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.5082 0 0 10.2 510.67 603.13 Tm (4.0 )Tj EMC /Suspect <>BDC 10.9017 0 0 10.2 113.71 592.33 Tm (40 )Tj EMC ET BT /T1_0 1 Tf 10.789 0 0 10.2 167.71 592.09 Tm (4.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0071 Tc 10.2 0 0 10.2 206.84 592.33 Tm (4.2. )Tj EMC /Suspect <>BDC 0.05 Tc 11.1486 0 0 10.2 246.91 592.33 Tm (4.3 )Tj EMC /Suspect <>BDC 10.9688 0 0 10.2 285.07 592.57 Tm (4.4 )Tj EMC /Suspect <>BDC 3.457 0 Td (4.5 )Tj EMC ET BT /T1_0 1 Tf 11.5082 0 0 11.2 360.67 592.8 Tm (4.6 )Tj 11.3284 0 0 10.2 398.59 592.8 Tm (4.7 )Tj 11.1486 0 0 10.2 436.51 592.33 Tm (4.8 )Tj 3.208 -0.024 Td (4.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.1264 0 0 10.2 511.29 592.33 Tm (5.0 )Tj EMC ET BT /T1_1 1 Tf -0.035 Tc 10.5569 0 0 12.4 114.39 581.77 Tm (so )Tj /T1_0 1 Tf 0.05 Tc 10.3968 0 0 10.2 168.1 581.53 Tm (5.1 )Tj ET BT /Suspect <>BDC /T1_2 1 Tf 13.0348 0 0 12.6 207.64 581.77 Tm (s.z )Tj EMC ET BT /T1_0 1 Tf 10.7616 0 0 10.2 247.53 581.77 Tm (5.3 )Tj 10.5792 0 0 10.2 285.45 582 Tm (5.4 )Tj 0.0477 Tc 10.8 0 0 10.8 323.13 582 Tm (5.5 )Tj 0.05 Tc 10.944 0 0 10.2 361.29 582.24 Tm (5.6 )Tj 10.944 0 0 10.8 399.21 582.48 Tm (5.7 )Tj 3.443 -0.066 Td (5.8 )Tj 10.3968 0 0 10.2 473.14 581.53 Tm (5.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.2269 0 0 10.2 511.06 582 Tm (6.0 )Tj EMC /Suspect <>BDC 10.5325 0 0 10.2 114.11 561.6 Tm (60 )Tj EMC ET BT /T1_0 1 Tf 10.5025 0 0 10.2 167.87 561.36 Tm (6.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0458 0 0 10.2 207.46 561.36 Tm (6.2 )Tj EMC /Suspect <>BDC 10.8647 0 0 10.2 247.3 561.36 Tm (6.3 )Tj EMC ET BT /T1_0 1 Tf 10.5025 0 0 10.2 285.47 561.85 Tm (6.4 )Tj 10.8647 0 0 10.2 322.9 561.6 Tm (6.5 )Tj 3.512 0.048 Td (6.7 )Tj 3.49 -0.024 Td (6.8 )Tj 10.6836 0 0 10.2 436.91 561.36 Tm (6.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.8647 0 0 10.2 472.92 561.85 Tm (7.0 )Tj EMC ET BT /T1_0 1 Tf 10.5026 0 0 10.2 511.09 561.85 Tm (7.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0364 Tc 10.2 0 0 10.2 114.13 551.77 Tm (70 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 0.05 Tc 11.2013 0 0 11.2 167.56 551.29 Tm (1.2 )Tj EMC ET BT /T1_0 1 Tf 10.5026 0 0 10.2 207.49 551.29 Tm (7.3 )Tj 10.8647 0 0 10.2 246.84 551.77 Tm (7.4 )Tj 10.6837 0 0 10.2 285.01 551.53 Tm (7.5 )Tj 10.8647 0 0 10.2 322.92 551.77 Tm (7.6 )Tj 11.0458 0 0 10.2 360.84 552 Tm (7.7 )Tj 10.6837 0 0 10.2 398.77 551.77 Tm (7.8 )Tj 3.527 -0.024 Td (7.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.134 0 0 10.2 472.36 551.77 Tm (8.0 )Tj EMC ET BT /T1_0 1 Tf 10.5864 0 0 10.2 510.77 551.77 Tm (8.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.6415 0 0 10.2 113.81 540.97 Tm (80 )Tj EMC ET BT /T1_0 1 Tf 0.0183 Tc 10.2 0 0 10.2 167.82 542.16 Tm (8.2.. )Tj 0.05 Tc 10.7689 0 0 10.2 207.41 540.97 Tm (8.3 )Tj 3.7 0.047 Td (8.4 )Tj 10.9515 0 0 10.2 284.93 541.21 Tm (8.5 )Tj 11.134 0 0 10.2 322.84 541.21 Tm (8.6 )Tj 3.406 0.024 Td (8.7 )Tj 10.9515 0 0 10.2 398.69 541.45 Tm (8.8 )Tj 10.7689 0 0 10.2 436.37 541.21 Tm (8.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.2294 0 0 10.2 472.43 541.21 Tm (9.0 )Tj EMC ET BT /T1_0 1 Tf 10.6861 0 0 10.2 510.84 541.21 Tm (9.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.5356 0 0 10.2 113.88 530.65 Tm (90 )Tj EMC /Suspect <>BDC -0.029 Tc 10.2 0 0 10.2 167.64 530.65 Tm (9.2. )Tj EMC /Suspect <>BDC 0.05 Tc 11.0483 0 0 10.2 206.99 530.41 Tm (9.3 )Tj EMC /Suspect <>BDC 10.8672 0 0 10.2 246.84 530.65 Tm (9.4 )Tj EMC ET BT /T1_0 1 Tf 11.0483 0 0 10.2 284.75 530.65 Tm (9.5 )Tj 10.8672 0 0 10.2 322.68 530.65 Tm (9.6 )Tj 11.2294 0 0 10.2 360.59 530.89 Tm (9.7 )Tj 10.8672 0 0 10.2 398.52 530.65 Tm (9.8 )Tj 0.0303 Tc 11.2 0 0 11.2 436.19 530.65 Tm (9.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.8936 0 0 10.2 466.9 531.13 Tm (10.0 )Tj EMC /Suspect <>BDC 10.6311 0 0 10.2 505.07 530.89 Tm (10.1 )Tj EMC /Suspect <>BDC 10.6765 0 0 10.2 107.87 520.57 Tm (100 )Tj EMC /Suspect <>BDC 0 Tc 10.2 0 0 10.2 161.89 520.33 Tm (1 )Tj EMC /Suspect <>BDC 0.0042 Tc 0.566 0 Td (o.z. )Tj EMC /Suspect <>BDC 0.05 Tc 10.7624 0 0 10.2 200.99 519.6 Tm (10.3 )Tj EMC /Suspect <>BDC 3.746 0.095 Td (10.4 )Tj EMC /Suspect <>BDC 10.8936 0 0 10.2 279.22 520.33 Tm (10.5 )Tj EMC /Suspect <>BDC 3.459 0 Td (10.6 )Tj EMC /Suspect <>BDC 11.0249 0 0 10.2 354.82 520.8 Tm (10.7 )Tj EMC /Suspect <>BDC 10.7624 0 0 10.2 392.75 520.57 Tm (10.8 )Tj EMC /Suspect <>BDC 3.523 0 Td (10.9 )Tj EMC /Suspect <>BDC 11.0249 0 0 10.2 466.66 520.33 Tm (11.0 )Tj EMC /Suspect <>BDC 0.0061 Tc 10.2 0 0 10.2 504.61 520.33 Tm (11.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.5195 0 0 10.2 107.88 510 Tm (110 )Tj EMC /Suspect <>BDC -0.0057 Tc 10.2 0 0 10.2 161.89 509.77 Tm (11.2. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.7624 0 0 10.2 200.51 509.05 Tm (11.3 )Tj 3.791 0.071 Td (11.5 )Tj 11.0249 0 0 10.2 278.98 510 Tm (11.6 )Tj 10.8936 0 0 10.2 316.9 510 Tm [(11.7 )-1209(11.8 )]TJ 10.6311 0 0 10.2 392.75 510 Tm (11.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0061 Tc 10.2 0 0 10.2 430.69 510 Tm (12..0 )Tj EMC /Suspect <>BDC -0.035 Tc 8.4431 0 0 10.2 466.99 510 Tm (12. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.4569 0 0 10.2 478.34 510 Tm (.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 9.9422 0 0 10.2 504.62 510.24 Tm (12..2. )Tj EMC /Suspect <>BDC 9.5115 0 0 10.2 107.67 489.36 Tm (1ZO )Tj EMC /Suspect <>BDC 0.012 Tc 10.2 0 0 10.2 161.41 489.13 Tm (12..3 )Tj EMC /Suspect <>BDC 0.0241 Tc 9.7 0 0 9.7 199.09 489.61 Tm ('12..4 )Tj EMC /Suspect <>BDC 0.012 Tc 10.2 0 0 10.2 240.85 489.36 Tm (12..5 )Tj EMC /Suspect <>BDC 0.0002 Tc 3.765 -0.023 Td (12..6 )Tj EMC /Suspect <>BDC 0.0169 Tc 10.1 0 0 10.1 316.69 489.36 Tm (12..7 )Tj EMC /Suspect <>BDC 0.0283 Tc 10.2 0 0 10.2 354.61 489.36 Tm (1Z.S )Tj EMC /Suspect <>BDC 0.0002 Tc 3.694 -0.023 Td (12..9 )Tj EMC /Suspect <>BDC 0.05 Tc 10.7624 0 0 10.2 430.43 489.13 Tm (13.0 )Tj EMC /Suspect <>BDC 10.8936 0 0 10.2 465.94 489.13 Tm (13.1 )Tj EMC /Suspect <>BDC 0.012 Tc 10.2 0 0 10.2 504.37 489.36 Tm (13.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.5195 0 0 10.2 107.4 478.8 Tm (130 )Tj EMC /Suspect <>BDC 10.7624 0 0 10.2 161.39 478.57 Tm (13.3 )Tj EMC /Suspect <>BDC 3.679 0 Td (13.4 )Tj EMC /Suspect <>BDC 11.0249 0 0 10.2 240.58 478.57 Tm (13.5 )Tj EMC ET BT /T1_0 1 Tf 11.0249 0 0 10.2 278.4946 478.57 Tm (13.6 )Tj 11.2874 0 0 10.2 316.17 478.8 Tm (13.7 )Tj 10.7624 0 0 10.2 354.59 478.8 Tm [(13.8 )-1251(13.9 )]TJ ET BT /Suspect <>BDC /T1_0 1 Tf 10.8936 0 0 10.8 430.18 478.8 Tm (14.0 )Tj EMC /Suspect <>BDC 10.7624 0 0 10.2 465.95 478.8 Tm (14.1 )Tj EMC /Suspect <>BDC -0.035 Tc 9.6617 0 0 9.8 504.15 478.8 Tm (1-4.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.5195 0 0 10.2 107.4 468.49 Tm (140 )Tj EMC /Suspect <>BDC 10.8936 0 0 10.2 161.14 468.24 Tm (14.3 )Tj EMC /Suspect <>BDC 0.0105 Tc 9.7 0 0 9.7 201.02 468.24 Tm (1-4.4 )Tj EMC /Suspect <>BDC 0.05 Tc 11.0249 0 0 10.2 240.58 468.24 Tm (14.5 )Tj EMC /Suspect <>BDC 11.1561 0 0 10.2 278.49 468.24 Tm (14.6 )Tj EMC /Suspect <>BDC 11.0249 0 0 10.2 316.42 468.49 Tm (14.7 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 10.2 354.59 468.24 Tm (14.8 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0105 Tc 9.7 0 0 9.7 392.06 468.49 Tm (1-4.9 )Tj EMC /Suspect <>BDC 0.05 Tc 11.0249 0 0 10.2 429.94 468.49 Tm (15.0 )Tj EMC ET BT /T1_0 1 Tf 10.6311 0 0 10.2 466.19 468.24 Tm (15.1 )Tj 10.3005 0 0 10.2 504.12 468.49 Tm (15 )Tj ET BT /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 9.2235 0 0 9.3 516.63 468.49 Tm (.2. )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.5195 0 0 10.2 107.4 457.93 Tm (150 )Tj EMC ET BT /T1_0 1 Tf 10.8936 0 0 10.2 160.9 457.93 Tm (15.3 )Tj 10.6311 0 0 10.2 200.99 458.17 Tm (15.4 )Tj 10.7624 0 0 10.2 240.83 457.93 Tm (15.5 )Tj 11.0249 0 0 10.2 278.5 457.93 Tm [(15.6 )-1189(15.7 )]TJ 10.8936 0 0 10.2 354.34 457.93 Tm [(15.8 )-1209(15.9 )]TJ ET BT /Suspect <>BDC /T1_0 1 Tf 11.2874 0 0 10.2 429.69 457.93 Tm (16.0 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 9.7 465.71 457.93 Tm (16.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0179 Tc 10.2 0 0 10.2 504.13 458.17 Tm (16.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.5195 0 0 10.2 107.16 447.85 Tm (160 )Tj EMC ET BT /T1_0 1 Tf 10.8936 0 0 10.2 160.9 447.61 Tm (16.3 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.9939 0 0 10.2 200.78 447.36 Tm (i6.4 )Tj EMC ET BT /T1_0 1 Tf 10.8936 0 0 10.2 240.58 447.36 Tm (16.5 )Tj 11.1561 0 0 10.2 278.25 447.13 Tm (16.6 )Tj 10.8936 0 0 10.2 316.42 447.36 Tm (16.8 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.3878 0 0 10.2 353.84 447.61 Tm (16.9. )Tj EMC ET BT /T1_0 1 Tf 0.0361 Tc 10.2 0 0 10.2 392.05 447.61 Tm (17 )Tj 0.05 Tc 10.7738 0 0 10.2 404.18 447.61 Tm (.o )Tj 10.7624 0 0 10.2 429.71 447.61 Tm (17.1 )Tj 10.3005 0 0 10.2 465.72 447.36 Tm (17 )Tj ET BT /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 10.5468 0 0 15.8 478.22 447.36 Tm (.z. )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.8936 0 0 10.2 504.1 447.61 Tm (17.3 )Tj EMC /Suspect <>BDC 10.5195 0 0 10.2 107.16 437.77 Tm (170 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 10.2 160.91 437.52 Tm (17.4 )Tj 11.0249 0 0 10.2 200.5 437.29 Tm (17.5 )Tj 10.8936 0 0 10.2 240.58 437.29 Tm (17.6 )Tj 11.0249 0 0 10.2 278.26 437.29 Tm (17.7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.3005 0 0 10.2 316.44 437.29 Tm (11 )Tj EMC ET BT /T1_0 1 Tf 11.6506 0 0 10.2 328.08 437.29 Tm (.a )Tj 10.8936 0 0 10.2 354.1 437.29 Tm (17.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.8936 0 0 10.2 392.0206 437.29 Tm (18.0 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 10.2 429.71 437.29 Tm (18.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0061 Tc 10.2 0 0 10.2 465.97 437.05 Tm (18.2. )Tj EMC /Suspect <>BDC 0.05 Tc 11.0249 0 0 10.2 503.86 437.29 Tm (18.3 )Tj EMC /Suspect <>BDC 10.6765 0 0 10.2 107.15 416.65 Tm (180 )Tj EMC ET BT /T1_0 1 Tf 11.0249 0 0 9.8 160.9 416.65 Tm (18.4 )Tj 11.1561 0 0 10.2 200.49 416.4 Tm [(18.5 )-1321(18.6 )]TJ 10.8936 0 0 10.2 278.74 416.4 Tm (18.7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.1561 0 0 10.2 315.93 416.17 Tm (18.8 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 10.2 354.11 416.4 Tm (18.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.1561 0 0 10.2 391.77 416.4 Tm (19.0 )Tj EMC ET BT /T1_0 1 Tf 10.7624 0 0 10.2 429.95 416.4 Tm (19.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.012 Tc 10.2 0 0 10.2 465.73 416.17 Tm (19.2. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 11.0249 0 0 10.2 503.86 416.4 Tm (19.3 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.5195 0 0 10.2 106.92 406.33 Tm (190 )Tj EMC /Suspect <>BDC 11.0249 0 0 10.2 160.66 406.33 Tm (19.4 )Tj EMC ET BT /T1_0 1 Tf 11.0249 0 0 10.2 200.5 406.08 Tm [(19.5 )-1364(19.6 )]TJ ET BT /Suspect <>BDC /T1_0 1 Tf 11.2874 0 0 10.2 278.25 406.08 Tm (19.7 )Tj EMC ET BT /T1_0 1 Tf 11.0249 0 0 10.2 315.94 405.85 Tm (19.8 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.7624 0 0 10.2 353.87 405.85 Tm (19.9 )Tj EMC /Suspect <>BDC -0.035 Tc 11.5163 0 0 14.2 391.62 406.33 Tm (z.o.o )Tj EMC /Suspect <>BDC 12.694 0 0 15.1 429.53 406.08 Tm (z.o.t )Tj EMC /Suspect <>BDC 11.7563 0 0 15.1 465.53 406.08 Tm (zo.z. )Tj EMC /Suspect <>BDC 0.0106 Tc 10.2 0 0 10.2 503.22 406.08 Tm (2.0.3 )Tj EMC /Suspect <>BDC -0.028 Tc -38.894 -0.94 Td (2.00 )Tj EMC /Suspect <>BDC 0.0047 Tc 5.294 -0.025 Td (2.0.4 )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 12.5255 0 0 15.4 200.27 396 Tm (z.o.s )Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.0244 Tc 10.2 0 0 10.2 240.45 396 Tm (Z.0.6 )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 11.0304 0 0 15.1 278.1 396 Tm (z.o. )Tj 0 Tc 10.2 0 0 10.2 293.89 396 Tm (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0106 Tc 10.2 0 0 10.2 315.7792 395.7654 Tm (2.0.8 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.718 0 Td (2.0.9 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.718 0.023 Td (2.1.0 )Tj EMC /Suspect <>BDC -0.007 Tc 3.718 -0.023 Td (2.1.1 )Tj EMC /Suspect <>BDC -0.035 Tc 9.9218 0 0 10.2 465.54 395.77 Tm (2.1.2. )Tj EMC /Suspect <>BDC 0.0165 Tc 10.2 0 0 10.2 503.22 395.77 Tm (2.1.3 )Tj EMC /Suspect <>BDC 0.0168 Tc 9.7 0 0 9.7 106.26 385.93 Tm (2.10 )Tj EMC /Suspect <>BDC 0.0106 Tc 10.2 0 0 10.2 160.26 385.93 Tm (2.1.4 )Tj EMC /Suspect <>BDC 3.906 -0.025 Td (2.1.5 )Tj EMC /Suspect <>BDC 3.929 0 Td (2.1.6 )Tj EMC /Suspect <>BDC -0.0231 Tc 3.718 0 Td (2.1. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 293.8902 385.675 Tm (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0106 Tc 10.2 0 0 10.2 315.5448 385.4404 Tm (2.1.8 )Tj EMC /Suspect <>BDC 3.718 0.023 Td (2.1.9 )Tj EMC /Suspect <>BDC -0.0321 Tc 3.694 0.025 Td (2.2..0 )Tj EMC /Suspect <>BDC -0.0012 Tc 3.741 -0.025 Td (22..1 )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 12.4477 0 0 15.8 464.52 385.68 Tm (.zz..z )Tj EMC /Suspect <>BDC /T1_0 1 Tf 10.0385 0 0 10.2 503.22 385.68 Tm (2.2..3 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 10.1951 0 0 15.8 106.41 375.61 Tm (z.z.o )Tj EMC /Suspect <>BDC /T1_0 1 Tf 9.805 0 0 10.2 160.5 375.61 Tm (2.2..4 )Tj EMC /Suspect <>BDC 10.0385 0 0 10.2 200.1 375.36 Tm (2.2..5 )Tj EMC /Suspect <>BDC 3.993 0 Td (2.2..6 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 10.645 0 0 15.8 278.01 375.61 Tm (z.z.. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 293.89 375.61 Tm (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 10.0385 0 0 10.2 315.78 375.36 Tm (2.2..8 )Tj EMC /Suspect <>BDC 0.0165 Tc 10.2 0 0 10.2 353.46 375.36 Tm (2.3.0 )Tj EMC /Suspect <>BDC -0.007 Tc 3.718 0.025 Td (2.3.1 )Tj EMC /Suspect <>BDC -0.035 Tc 10.0385 0 0 10.2 429.3 375.13 Tm (2.3.2. )Tj EMC /Suspect <>BDC -0.0012 Tc 10.2 0 0 10.2 465.3 375.36 Tm (2.3.3 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.718 0.025 Td (2.3.4 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 0.05 Tc 10.7447 0 0 9.9 106.27 365.29 Tm (230 )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.0165 Tc 10.2 0 0 10.2 160.26 365.05 Tm (2.3.5 )Tj EMC ET BT /T1_0 1 Tf 10.2 0 0 10.2 199.8564 365.05 Tm (2.3.6 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.0153 Tc 10.2 0 0 10.2 239.9322 365.05 Tm (2.3. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 255.9666 365.05 Tm (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0165 Tc 10.2 0 0 10.2 277.6212 364.795 Tm (2.3.8 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.718 -0.023 Td (2.3.9 )Tj EMC /Suspect <>BDC 0.05 Tc 11.2275 0 0 10.2 353.21 365.05 Tm (24.0 )Tj EMC /Suspect <>BDC 0.0047 Tc 10.2 0 0 10.2 390.9 365.05 Tm (2.4.1 )Tj EMC /Suspect <>BDC -0.035 Tc 10.0385 0 0 10.2 429.06 364.8 Tm (2.4.2. )Tj EMC /Suspect <>BDC 0.0047 Tc 10.2 0 0 10.2 465.06 364.57 Tm (2.4.3 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.741 0.047 Td (2.4.4 )Tj EMC /Suspect <>BDC -0.035 Tc 10.1839 0 0 10.2 106.26 344.65 Tm (2.40 )Tj EMC /Suspect <>BDC 0.0165 Tc 10.2 0 0 10.2 160.02 344.17 Tm (2.4.5 )Tj EMC /Suspect <>BDC 3.906 0 Td (2.4.6 )Tj EMC /Suspect <>BDC -0.0275 Tc 3.906 0.023 Td (2.4.'7 )Tj EMC /Suspect <>BDC 0.05 Tc 10.8448 0 0 10.2 277.86 344.17 Tm (24.8 )Tj EMC /Suspect <>BDC -0.0012 Tc 10.2 0 0 10.2 315.54 344.17 Tm (2.4.9 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.718 0 Td (2.5.0 )Tj EMC /Suspect <>BDC -0.0012 Tc 3.694 0 Td (2.5.1 )Tj EMC /Suspect <>BDC -0.035 Tc 10.0385 0 0 10.2 429.06 344.17 Tm (2.5.2. )Tj EMC /Suspect <>BDC 0.0047 Tc 10.2 0 0 10.2 465.06 343.93 Tm (2.5.3 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.741 0.024 Td (2.5.4 )Tj EMC /Suspect <>BDC /T1_1 1 Tf -0.035 Tc 11.2371 0 0 12.9 106.26 333.85 Tm (zso )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.0047 Tc 10.2 0 0 10.2 160.02 333.85 Tm (2.5.5 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.906 0 Td (2.5.6 )Tj EMC /Suspect <>BDC -0.0153 Tc 3.906 0.023 Td (2.5. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 255.9714 334.0846 Tm (7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.0012 Tc 10.2 0 0 10.2 277.8606 333.85 Tm (2.5.8 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.671 0 Td (2.5.9 )Tj EMC /Suspect <>BDC 0.0165 Tc 3.718 0.023 Td (2.6.0 )Tj EMC /Suspect <>BDC -0.0012 Tc 3.671 -0.023 Td (2.6.1 )Tj EMC /Suspect <>BDC -0.035 Tc 10.0385 0 0 10.2 429.06 333.85 Tm (2.6.2. )Tj EMC /Suspect <>BDC 0.0047 Tc 10.2 0 0 10.2 464.82 333.61 Tm (2.6.3 )Tj EMC /Suspect <>BDC 0.0429 Tc 3.768 0.024 Td (Z6.4 )Tj EMC /Suspect <>BDC -0.028 Tc -38.944 -0.988 Td (2.60 )Tj EMC /Suspect <>BDC 0.0106 Tc 5.294 -0.025 Td (2.6.5 )Tj EMC /Suspect <>BDC 0.0165 Tc 3.882 0 Td (2.6.6 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.953 0.025 Td (2.6.7 )Tj EMC /Suspect <>BDC 3.694 -0.025 Td (2.6.8 )Tj EMC /Suspect <>BDC -0.0012 Tc 3.694 0 Td (2.6.9 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.718 0.025 Td (2.7.0 )Tj EMC /Suspect <>BDC -0.035 Tc 9.5083 0 0 10.2 390.66 323.77 Tm (2.7 )Tj EMC ET BT /T1_0 1 Tf 0.0455 Tc 10.2 0 0 10.2 403.23 323.77 Tm (.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 9.0949 0 0 10.2 428.83 323.52 Tm (2.7 )Tj EMC /Suspect <>BDC 9.4659 0 0 10.2 440.92 323.52 Tm (.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.3317 0 0 10.2 464.85 323.29 Tm (Z7.3 )Tj EMC /Suspect <>BDC -0.035 Tc 9.0949 0 0 10.2 503.23 323.77 Tm (2.7 )Tj EMC /Suspect <>BDC 0.05 Tc 10.7738 0 0 10.2 515.3 323.77 Tm (.4 )Tj EMC /Suspect <>BDC -0.028 Tc 10.2 0 0 10.2 106.02 313.93 Tm (2.70 )Tj EMC /Suspect <>BDC -0.035 Tc 9.5083 0 0 10.2 159.78 313.45 Tm (2.7 )Tj EMC ET BT /T1_2 1 Tf 0.0105 Tc 14.3 0 0 14.3 171.94 313.45 Tm (.s )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0106 Tc 10.2 0 0 10.2 199.62 313.45 Tm (2.7.6 )Tj EMC /Suspect <>BDC 0.05 Tc 10.5719 0 0 10.2 239.48 313.68 Tm (Z7.7 )Tj EMC /Suspect <>BDC 10.2115 0 0 10.2 277.41 313.45 Tm (Z7.8 )Tj EMC /Suspect <>BDC 0.0429 Tc 10.2 0 0 10.2 315.33 313.45 Tm (Z7.9 )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 14.2405 0 0 14.9 352.96 313.45 Tm (zs.o )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0429 Tc 10.2 0 0 10.2 390.69 313.45 Tm (Z8.1 )Tj EMC /Suspect <>BDC -0.035 Tc 12.2986 0 0 15.1 428.57 313.21 Tm (za.z. )Tj EMC /Suspect <>BDC 0.0106 Tc 10.2 0 0 10.2 464.58 312.96 Tm (2.8.3 )Tj EMC /Suspect <>BDC 0.0047 Tc 3.765 0.025 Td (2.8.4 )Tj EMC /Suspect <>BDC -0.035 Tc 10.1839 0 0 10.2 106.02 303.13 Tm (2.80 )Tj EMC /Suspect <>BDC 0.0106 Tc 10.2 0 0 10.2 159.78 303.13 Tm (2.8.5 )Tj EMC /Suspect <>BDC 0.05 Tc 10.3317 0 0 10.2 199.89 303.13 Tm (Z8.6 )Tj EMC /Suspect <>BDC 3.856 0 Td (Z8.7 )Tj EMC /Suspect <>BDC 11.3562 0 0 10.2 277.62 303.13 Tm (za.8 )Tj EMC /Suspect <>BDC 0.0429 Tc 10.2 0 0 10.2 315.33 302.89 Tm (Z8.9 )Tj EMC /Suspect <>BDC 0.05 Tc 11.0999 0 0 10.2 352.73 302.89 Tm (29.0 )Tj EMC /Suspect <>BDC 10.7172 0 0 10.2 390.66 302.89 Tm (29.1 )Tj EMC /Suspect <>BDC -0.035 Tc 10.1552 0 0 10.2 428.34 302.65 Tm (2.9.2. )Tj EMC /Suspect <>BDC 0.0106 Tc 10.2 0 0 10.2 464.34 302.65 Tm (2.9.3 )Tj EMC /Suspect <>BDC 3.765 0.024 Td (2.9.4 )Tj EMC /Suspect <>BDC 0.0129 Tc -38.868 -0.989 Td (Z90 )Tj EMC /Suspect <>BDC /T1_2 1 Tf 0.0357 Tc 11.2 0 0 11.2 160.03 292.57 Tm (29.5 )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.9724 0 0 10.2 199.85 292.57 Tm (29.6 )Tj EMC /Suspect <>BDC 0.0165 Tc 10.2 0 0 10.2 239.7 292.8 Tm (2.9.7 )Tj EMC /Suspect <>BDC 0.0106 Tc 3.718 -0.023 Td (2.9.8 )Tj EMC /Suspect <>BDC 0.0429 Tc 3.721 0 Td (Z9.9 )Tj EMC /Suspect <>BDC 0.05 Tc 11.2072 0 0 10.2 353.15 292.57 Tm (30.0 )Tj EMC /Suspect <>BDC 10.6919 0 0 10.2 391.08 292.8 Tm (30.1 )Tj EMC /Suspect <>BDC 0.021 Tc 10.2 0 0 10.2 429 292.57 Tm (30.2. )Tj EMC /Suspect <>BDC 0.05 Tc 10.9495 0 0 10.2 464.99 292.33 Tm (30.3 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 503.149 292.5748 Tm (30.4 )Tj ET BT /Suspect <>BDC /C0_0 1 Tf 0 Tc 5.4601 0 0 18.24 159.85 272.17 Tm <00330030002E007E0020>Tj EMC ET BT /T1_1 1 Tf 13.8 0 0 13.8 438.83 281.52 Tm (. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.5944 0 0 10.2 105.72 272.4 Tm (300 )Tj EMC /Suspect <>BDC 11.2072 0 0 10.2 199.55 272.4 Tm (30.6 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 239.63 272.4 Tm (30.7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.9495 0 0 10.2 277.55 272.4 Tm (30.8 )Tj EMC /Suspect <>BDC 3.441 -0.023 Td (30.9 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 353.15 272.17 Tm (31.0 )Tj 10.8207 0 0 10.2 390.83 272.17 Tm (31.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0092 Tc 10.2 0 0 10.2 429 271.93 Tm (31.2. )Tj EMC /Suspect <>BDC 0.05 Tc 12.5847 0 0 10.2 464.97 268.8 Tm (3l.3 )Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 3.12 0 0 10.08 490.57 268.8 Tm <007E0020>Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 11.2072 0 0 10.2 502.91 271.93 Tm (31.4 )Tj EMC /Suspect <>BDC 10.7479 0 0 10.2 105.71 262.08 Tm (310 )Tj EMC ET BT /T1_0 1 Tf 0.0437 Tc 10.2 0 0 10.2 160.2 261.36 Tm (31.5\\ )Tj 0.05 Tc 11.0784 0 0 10.2 199.55 262.08 Tm (31.6 )Tj 3.618 0.025 Td (31.7 )Tj 3.401 -0.025 Td (31.8 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.9495 0 0 10.2 315.23 261.85 Tm (31.9 )Tj EMC /Suspect <>BDC -0.0072 Tc 10.2 0 0 10.2 352.92 262.08 Tm (3Z.O )Tj EMC /Suspect <>BDC -0.0025 Tc 3.718 -0.023 Td (32..1 )Tj EMC /Suspect <>BDC /T1_3 1 Tf -0.035 Tc 9.737 0 0 9.8 428.49 261.61 Tm (32..Z )Tj EMC ET BT /T1_0 1 Tf 0 Tc 10.2 0 0 10.2 464.52 261.61 Tm (3 )Tj 0.05 Tc 10.7738 0 0 10.2 476.9 261.61 Tm (.4 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0481 Tc 10.2 0 0 10.2 503.16 261.61 Tm (3Z.S )Tj EMC /Suspect <>BDC -0.0299 Tc -38.941 -0.966 Td (32.0 )Tj EMC /Suspect <>BDC 0.05 Tc 11.428 0 0 10.2 159.71 252.25 Tm (3z.s, )Tj EMC /Suspect <>BDC 0.0151 Tc 10.2 0 0 10.2 199.56 251.76 Tm (32..6 )Tj EMC /Suspect <>BDC 0.05 Tc 12.731 0 0 10.2 239.37 251.76 Tm (3l.7 )Tj EMC /Suspect <>BDC 0.0092 Tc 10.2 0 0 10.2 277.32 251.53 Tm (32..9 )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 11.2072 0 0 10.2 314.99 251.53 Tm (33.0 )Tj 10.8207 0 0 10.2 352.91 251.29 Tm (33.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0151 Tc 10.2 0 0 10.2 390.84 251.53 Tm (33.2. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 10.9495 0 0 10.2 428.51 251.29 Tm (33.3 )Tj 11.0784 0 0 10.2 464.51 251.29 Tm (33.4 )Tj 3.466 -0.025 Td (33.5 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.7479 0 0 10.2 105.71 241.45 Tm (330 )Tj EMC ET BT /T1_0 1 Tf 11.336 0 0 10.2 159.23 241.45 Tm (33.6 )Tj 11.2072 0 0 10.2 199.31 241.45 Tm [(33.7 )-1305(33.8 )]TJ 11.0784 0 0 10.2 277.07 241.45 Tm (33.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0784 0 0 10.2 314.9914 241.6846 Tm (34.0 )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 7.3865 0 0 10.2 341.37 241.68 Tm (.. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.8207 0 0 10.2 352.67 241.45 Tm (34.1 )Tj EMC /Suspect <>BDC 10.9495 0 0 10.2 390.83 241.45 Tm (34.2 )Tj EMC /Suspect <>BDC 11.0784 0 0 10.2 428.27 241.21 Tm (34.3 )Tj EMC /Suspect <>BDC -0.0034 Tc 10.2 0 0 10.2 464.52 241.68 Tm (34i.4 )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 11.2072 0 0 10.2 502.91 240.73 Tm (34.5 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.7479 0 0 10.2 105.47 231.61 Tm (340 )Tj EMC /Suspect <>BDC 0 Tc 10.2 0 0 10.2 128.72 231.61 Tm (\225 )Tj EMC /Suspect <>BDC 0.05 Tc 11.0784 0 0 10.2 159.47 231.37 Tm (34.6 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 199.3079 231.37 Tm (34.7 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0784 0 0 10.2 239.1459 231.6148 Tm (34.8 )Tj EMC /Suspect <>BDC 10.9495 0 0 10.2 277.07 231.37 Tm (34.9 )Tj EMC /Suspect <>BDC 11.2072 0 0 10.2 314.75 231.61 Tm (35.0 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 352.67 231.37 Tm (35.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0151 Tc 10.2 0 0 10.2 390.6 231.37 Tm (35.2. )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 11.0784 0 0 10.2 428.27 230.89 Tm (35.3 )Tj 10.8207 0 0 10.2 464.51 231.13 Tm (35.4 )Tj 11.0784 0 0 10.2 502.91 230.65 Tm (35.5 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 13.689 0 0 10.2 105.44 220.81 Tm (350-)Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 159.71 221.04 Tm (35.6 )Tj 11.0784 0 0 10.2 199.31 221.04 Tm (35.7 )Tj 11.2072 0 0 10.2 239.15 221.29 Tm (35.8 )Tj 10.9495 0 0 10.2 277.31 221.29 Tm (35.9 )Tj 11.2072 0 0 10.2 314.75 221.29 Tm (36.0 )Tj 10.8207 0 0 10.2 352.91 221.04 Tm (36.1 )Tj 10.9495 0 0 10.2 390.83 221.04 Tm (36.2 )Tj 11.0784 0 0 10.2 428.51 220.57 Tm (36.3 )Tj 3.228 0.024 Td (36.4 )Tj 11.2072 0 0 10.4 502.67 220.33 Tm (36.5 )Tj /T1_1 1 Tf 0 Tc 23.2001 0 0 23.2001 119.78 210.25 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 10.9015 0 0 10.2 104.99 200.17 Tm (360 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 159.47 200.4 Tm (36.6 )Tj 11.0784 0 0 10.2 199.31 200.4 Tm (36.7 )Tj 11.2072 0 0 10.2 238.91 200.65 Tm (36.8 )Tj 11.0784 0 0 10.2 276.83 200.65 Tm (36.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.2072 0 0 10.2 314.75 200.65 Tm (37.0 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 352.43 200.4 Tm (37.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0784 0 0 10.2 390.5951 200.4 Tm (37.2 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 428.27 200.4 Tm (37.3 )Tj 11.0784 0 0 10.2 464.03 200.17 Tm [(37.4 )-1238(37.5 )]TJ ET BT /Suspect <>BDC /T1_0 1 Tf 10.9015 0 0 10.2 104.99 189.85 Tm (370 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 159.23 190.09 Tm (37.6 )Tj 3.596 0.024 Td [(37.7 )-1346(37.8 )]TJ ET BT /Suspect <>BDC /T1_0 1 Tf 10.9495 0 0 10.2 276.83 190.33 Tm (37.9 )Tj EMC /Suspect <>BDC 11.336 0 0 10.2 314.51 190.09 Tm (38.0 )Tj EMC ET BT /T1_0 1 Tf 10.8207 0 0 10.2 352.43 190.09 Tm (38.1 )Tj ET BT /Suspect <>BDC /T1_2 1 Tf 10.7446 0 0 10.5 390.62 190.09 Tm (38.2 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 428.27 189.85 Tm (38.3 )Tj 11.0784 0 0 10.2 464.03 189.85 Tm (38.4 )Tj 11.2072 0 0 10.2 502.43 189.61 Tm (38.5 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.7479 0 0 10.2 104.99 179.29 Tm (380 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 159.23 179.76 Tm [(38.6 )-1388(38.7 )]TJ 11.2072 0 0 10.2 238.67 179.76 Tm (38.8 )Tj 10.9495 0 0 10.2 276.83 179.76 Tm (38.9 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0784 0 0 10.2 314.75 179.76 Tm (39.0 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 352.43 179.53 Tm (39.1 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 11.0784 0 0 10.2 390.35 179.53 Tm (39.2 )Tj EMC /Suspect <>BDC 3.423 -0.024 Td (39.3 )Tj EMC /Suspect <>BDC 10.9495 0 0 10.2 464.51 179.04 Tm (39.4 )Tj EMC ET BT /T1_0 1 Tf 11.0784 0 0 10.2 502.67 178.81 Tm (39.5 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.7479 0 0 10.2 105.23 168.97 Tm (390 )Tj EMC /Suspect <>BDC 11.2072 0 0 10.2 159.23 169.21 Tm (39.6 )Tj EMC ET BT /T1_0 1 Tf 10.9495 0 0 10.2 199.31 169.21 Tm (39.7 )Tj 11.2072 0 0 10.2 239.15 169.21 Tm (39.8 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 10.9495 0 0 10.2 277.07 169.21 Tm (39.9 )Tj EMC /Suspect <>BDC 11.5881 0 0 10.2 314.11 169.68 Tm (40.0 )Tj EMC /Suspect <>BDC 11.4607 0 0 10.2 351.79 169.45 Tm (40.1 )Tj EMC /Suspect <>BDC 10.5881 0 0 10.2 389.96 169.45 Tm (40.Z )Tj EMC /Suspect <>BDC 11.4607 0 0 10.2 427.63 168.97 Tm (40.3 )Tj EMC /Suspect <>BDC 11.2061 0 0 10.2 464.11 168.97 Tm (40.4 )Tj EMC /Suspect <>BDC 11.4607 0 0 10.2 502.03 168.97 Tm (40.5 )Tj EMC ET endstream endobj 84 0 obj <>stream Hd͊zy8 >sRhF^#y QG#Oç==o/ϧ;c_mӷKv|~_oo~y>}~W=|z>{O݇q~?>Ï?o+~ߒ~;%zΏx߽w;>lp?(O?{wٸ^ PZUuTGu^5P5FjFDMԤU PjVjUmFmک]uPuNNE]E5|| _#_k55|| _#_k55|| _#_k55|| _#_k5Z||-_+_kZ||-_+_kZ||-_+_kZ||-_+_ku:||_'_uu:||_'_uu:||_'_uu:||_'_uz||=_/_z||=_/_z||=_/_z||=_/_ || ߀o77 || ߀o77 || ߀o77 || ߀o77 KG#(~? ?G#(~? ?G#(~? ?G#(~? ?z $߄o77MM&|| $߄o77MM&|| $߄o77MM&|| $߄o77MM&||3,ߌo77f||3,ߌo77f||3,ߌo77f||3,ߌo77f|| "߂oȷ[--|| "߂oȷ[--|| "߂oȷ[--|| "߂oȷ[--||+*ߊoŷʷ[V||+*ߊoŷʷ[V||+*ߊoŷʷ[V||+*ߊoŷʷ[V|| &߆o÷ɷmm6|| &߆o÷ɷmm6|| &߆o÷ɷmm6|| &߆o÷ɷmm6|ۯ\t;]~~߅ww;]~~߅ww;]~~߅ww;]~~߅w߁w;;|C߁w;;|C߁w;;|C߁w;;|C߉w;;NN|'S߉w;;NN|'S߉w;;NN|'S߉w;;NN|'S ߅w]..|K ߅w]..|K ߅w]..|K ߅w]..|?|x>stream 0 @&l] 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Regrinding or replacement of the knife edge may be neces-) Tj T* 0 Tc -0.0032 Tw (sary to restore a lever system to proper operating condition.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (8.) Tj 18 0 TD 0 Tc -0.0033 Tw (Pressure Measurements.) Tj ET 104.4 633.12 149.28 0.72 re f BT 104.4 607.2 TD -0.0043 Tc 0 Tw (a.) Tj 18 0 TD 0 Tc -0.0031 Tw (Primary Standards for Pressure Measurements.) Tj ET 122.4 605.76 288.72 0.72 re f BT 411.12 607.2 TD -0 Tc -0.0023 Tw ( Several types) Tj -324.72 -13.68 TD -0 Tc -0.0022 Tw (of equipment are available that can be used as primary standards for) Tj 0 -13.68 TD 0 Tc -0.0031 Tw (the calibration of pressure measuring devices. Three types are de-) Tj T* -0 Tc -0.0027 Tw (scribed in the following paragraphs.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0.0013 Tc -0.0015 Tw (Dead Load Tester.) Tj ET 131.52 537.36 110.16 0.72 re f BT 241.68 538.8 TD -0 Tc -0.0028 Tw ( The most frequently used primary standard) Tj -155.28 -13.68 TD -0 Tc -0.0023 Tw (is the dead-load tester \(Fig. 13\). This is a hydraulic system in which) Tj 0 -13.68 TD -0 Tc -0.0022 Tw (an accurate pressure is obtained by balancing calibrated weights on a) Tj T* 0 Tc -0.0029 Tw (vertical piston of accurately known area. Accuracy is usually 0.1 per-) Tj T* 0 Tc -0.0029 Tw (cent of full range. These instruments are made in a wide span of pres-) Tj T* 0 Tc -0.0034 Tw (sure ranges from low to very high.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0.0009 Tc -0.002 Tw (Precision Laboratory Test Gages.) Tj ET 131.52 441.6 199.2 0.72 re f BT 330.72 443.04 TD 0 Tc -0.0035 Tw ( These are Bourdon-tube-) Tj -244.32 -13.68 TD -0 Tc -0.0025 Tw (type gages, usually 12 in. or more in diameter, with an accuracy of) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (0.1. percent or better of full-scale range \(Fig. 14\). A typical certi-) Tj T* -0 Tc -0.0026 Tw (ficate of calibration as supplied by the manufacturer is shown in) Tj T* -0.0034 Tc 0 Tw (Fig. 15.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD -0 Tc -0.0025 Tw (Quartz Tube Pressure Gage.) Tj ET 131.52 359.52 170.64 0.72 re f BT 302.16 360.96 TD -0 Tc -0.0027 Tw ( This device, consists of a capsule) Tj -215.76 -13.68 TD -0 Tc -0.0026 Tw (containing a quartz spiral Bourdon tube that has its free end attached) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (to a pointer or, as in the device pictured in Fig. 16, the free end has a) Tj T* 0 Tc -0.003 Tw (mirror attached. The rotation of the mirror is measured by means of) Tj T* -0 Tc -0.0027 Tw (photoelectric cells that convert the rotation into a digital reading. The) Tj T* -0 Tc -0.0024 Tw (digital reading is multiplied by a calibration factor to give the pressure) Tj T* -0 Tc -0.0027 Tw (in pounds per square inch. Interchangeable capsules are available for) Tj T* 0 Tc -0.0032 Tw (any desired pressure range. The calibration certificate for the device) Tj T* -0 Tc -0.0026 Tw (in Fig. 16 is shown in Fig. 17. Accuracy for some of these devices is) Tj T* 0 Tc -0.0029 Tw (in the order of 0.015 percent full-scale reading.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0 Tc -0.0029 Tw (Bourdon Tube Pressure Gages.) Tj ET 122.4 209.04 185.76 0.72 re f BT 308.16 210.48 TD -0 Tc -0.0026 Tw ( The most widely used instrument) Tj -221.76 -13.68 TD 0 Tc -0.0033 Tw (for the measurement of fluid or gas pressures is the Bourdon tube gage.) Tj 0 -13.68 TD 0 Tc -0.003 Tw (Gages for the measurement of vacuum and low pressure \(maximum) Tj T* -0 Tc -0.0026 Tw (15 psi\) often use a diaphragm or bellows, as this construction more) Tj T* 0 Tc -0.003 Tw (readily develops the force necessary to actuate the mechanism. Both) Tj T* 0 Tc -0.0031 Tw (types of gages require a volume change to indicate pressure; this pre-) Tj T* 0 Tc -0.0032 Tw (cludes their use where volume change cannot be tolerated \(direct) Tj T* 0 Tc -0.0034 Tw (measurement of pore water pressure\). Several categories of Bourdon) Tj T* 0 Tc -0.003 Tw (tube gages, listed in order of accuracy, are described in the following) Tj T* -0 Tc 0 Tw (subparagraphs.) Tj ET endstream endobj 88 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 89 0 obj [90 0 R 91 0 R 92 0 R] endobj 90 0 obj <>stream q 276 0 0 279.6 170.88 420 cm /im12 Do endstream endobj 91 0 obj <>stream Q q 268.32 0 0 241.2 174.72 116.4 cm /im13 Do endstream endobj 92 0 obj <>stream Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (22) Tj -81.84 349.44 TD -0.0016 Tc -0.0012 Tw (Fig. 13. 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608.88 Tm (______ )Tj EMC /Suspect <>BDC 13.4663 0 0 6.1 227.67 608.88 Tm (,._ )Tj EMC /Suspect <>BDC 22.7505 0 0 6.1 246.35 608.88 Tm (_________ )Tj EMC /Suspect <>BDC 0 Tc 6.1 0 0 6.1 371.85 608.88 Tm (, )Tj EMC /Suspect <>BDC 0.05 Tc 28.7879 0 0 6.1 376.94 608.88 Tm (___ )Tj EMC /Suspect <>BDC /T1_0 1 Tf 5.6223 0 0 5.5001 430.02 608.88 Tm (eH )Tj EMC ET BT /T1_0 1 Tf 28.732 0 0 5.5001 437.6 608.88 Tm (____ )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0 Tc 5.5001 0 0 5.5001 499.83 608.88 Tm (\225 )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 43.0059 0 0 5.6 118.04 585.13 Tm (--)Tj 12.7711 0 0 5.6 151.17 585.13 Tm (.. )Tj 73.1793 0 0 5.6 160.16 585.13 Tm (--)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 6.7178 0 0 5.6 214.49 585.13 Tm (el )Tj EMC /Suspect <>BDC 0 Tc 6.2 0 0 6.2 222.91 585.13 Tm (l )Tj EMC /Suspect <>BDC 0.05 Tc 10.3417 0 0 6.2 228.8 585.13 Tm (,_..;. )Tj EMC /Suspect <>BDC 6.3474 0 0 6.2 253.22 585.13 Tm (100.000 )Tj EMC /Suspect <>BDC 26.8133 0 0 6.2 278.12 585.13 Tm (""--)Tj EMC /Suspect <>BDC 0 Tc 6.2 0 0 6.2 325.61 585.13 Tm (-)Tj EMC /Suspect <>BDC 0.05 Tc 6.7178 0 0 5.6 347.21 585.13 Tm (el )Tj EMC /Suspect <>BDC 42.9558 0 0 5.6 356.12 585.13 Tm (-\267 )Tj EMC /Suspect <>BDC 17.9309 0 0 5.6 386.74 585.13 Tm (._. )Tj EMC /Suspect <>BDC 14.9754 0 0 5.6 409.5 585.13 Tm (-. )Tj EMC /Suspect <>BDC 7.5081 0 0 6.2 422.8 585.13 Tm ('674\225 )Tj EMC ET BT /T1_0 1 Tf 0 Tc 6.2 0 0 6.2 443.45 585.13 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 5.8612 0 0 5.5001 456.99 585.13 Tm (Ne. )Tj EMC /Suspect <>BDC 6.6861 0 0 6.2 470.19 585.13 Tm (N74S. )Tj EMC /Suspect <>BDC 11.146 0 0 8.3 492.47 585.13 Tm (n. )Tj EMC /Suspect <>BDC -0.035 Tc 13.4634 0 0 18.4 118.04 591.37 Tm (.....,. )Tj EMC /Suspect <>BDC 27.7613 0 0 43.2001 141.43 591.37 Tm (___ )Tj EMC /Suspect <>BDC 0.0457 Tc 15.6 0 0 15.6 183.99 591.37 Tm (....,.,.,.__-: )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 34.7852 0 0 56.1 259.77 591.37 Tm (___ )Tj ET BT /Suspect <>BDC /T1_2 1 Tf 9.1571 0 0 18.2001 313.2 591.37 Tm (.., )Tj EMC ET BT /T1_2 1 Tf 18.0393 0 0 39.2001 322.55 591.37 Tm (.. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 37.1265 0 0 59 334.9 591.37 Tm (___ )Tj EMC /Suspect <>BDC /T1_2 1 Tf 0 Tc 11.5 0 0 11.5 388.52 591.37 Tm (, )Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 26.8035 0 0 41.7001 394.15 591.37 Tm (_______ )Tj EMC /Suspect <>BDC 0 Tc 41.7001 0 0 41.7001 485.63 591.37 Tm (_ )Tj EMC ET BT /T1_0 1 Tf 0.05 Tc 33.2949 0 0 7 117.68 568.32 Tm (--)Tj 9.4601 0 0 7 143.8 568.32 Tm (.. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 6.6991 0 0 7 151.67 568.32 Tm (U.IIOO. )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.0087 Tc 7.1 0 0 7.1 246.86 551.76 Tm (C.el )Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 8.2709 0 0 8.5 261.53 551.76 Tm (io!Wtcd )Tj EMC /Suspect <>BDC /T1_2 1 Tf 6.4202 0 0 7.1 289.3 551.76 Tm (DIAD )Tj EMC /Suspect <>BDC 0.05 Tc 9.0936 0 0 6 307.84 551.76 Tm (-OilY )Tj EMC /Suspect <>BDC 0 Tc 30.4 0 0 30.4 396.92 549.13 Tm (* )Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.0216 Tc 6.4001 0 0 6.4001 414.18 549.13 Tm (OAUGI )Tj EMC /Suspect <>BDC 0.0413 Tc 6 0 0 6 438.2 549.13 Tm (IIAOINO )Tj EMC /Suspect <>BDC -0.0295 Tc 6.4001 0 0 6.4001 167.72 545.52 Tm (IIADIMO )Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 15.9217 0 0 31.3 302.93 544.81 Tm (.... )Tj EMC /Suspect <>BDC 38.0084 0 0 46.4001 417.05 533.05 Tm (\267---)Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 6.4523 0 0 6.1 168.45 536.64 Tm (HUMIII )Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 24.96 0 0 5.28 296.41 537.85 Tm <007E0020>Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 19.0752 0 0 10.6 420.97 535.44 Tm (--)Tj EMC /Suspect <>BDC 12.5033 0 0 10.6 438.46 535.44 Tm (wt.-)Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 45.0467 0 0 48.8 296.22 521.76 Tm (--)Tj EMC /Suspect <>BDC /T1_0 1 Tf 11.5366 0 0 15.6 422.4 534.73 Tm (.....,.._. )Tj EMC /Suspect <>BDC /T1_2 1 Tf 0 Tc 5.9001 0 0 5.9001 178.64 517.69 Tm (I )Tj EMC /Suspect <>BDC /T1_3 1 Tf 12.4 0 0 12.4 269.43 513.85 Tm (l )Tj EMC /Suspect <>BDC /C0_0 1 Tf 8.52 0 0 15.84 290.17 512.41 Tm <007E007E0020>Tj EMC /Suspect <>BDC 5.4481 0 0 15.84 313.93 512.41 Tm <007E00B70035003B002D004300620074002600B70020>Tj EMC ET BT /T1_0 1 Tf 30.8 0 0 30.8 430.43 511.21 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 6.9001 0 0 6.9001 178.28 506.64 Tm (2 )Tj EMC /Suspect <>BDC 10.6 0 0 10.6 268.74 503.28 Tm (2 )Tj EMC /Suspect <>BDC /T1_3 1 Tf 13 0 0 13 310.1 506.64 Tm (I )Tj EMC ET BT /T1_0 1 Tf 24.8 0 0 24.8 434.1 503.05 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 5.9001 0 0 5.9001 177.97 495.85 Tm (l )Tj EMC /Suspect <>BDC /C0_0 1 Tf 3.96 0 0 6.72 269.52 493.45 Tm <002D007E0020>Tj EMC ET BT /T1_2 1 Tf 28.4 0 0 28.4 436.05 488.64 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 15.9 0 0 15.9 177.59 481.45 Tm (\225 )Tj EMC /Suspect <>BDC 12.1 0 0 12.1 272.12 483.36 Tm (v )Tj EMC ET BT /T1_2 1 Tf 23.2001 0 0 23.2001 438.98 478.57 Tm (-)Tj 20.6 0 0 20.6 491.92 486.24 Tm (. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 9.3 0 0 9.3 178.43 474.01 Tm (s )Tj EMC /Suspect <>BDC /T1_2 1 Tf 25.6 0 0 25.6 274.23 460.8 Tm (' )Tj EMC ET BT /T1_0 1 Tf 24.8 0 0 24.8 440.34 470.17 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 16.8 0 0 16.8 178.06 459.13 Tm (\225 )Tj EMC /Suspect <>BDC 25.6 0 0 25.6 272.55 449.28 Tm (' )Tj EMC ET BT /T1_0 1 Tf 30.8 0 0 30.8 438.59 457.93 Tm (-)Tj 6.9001 0 0 6.9001 178.01 452.17 Tm (7 )Tj ET BT /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 13.4006 0 0 25.8 272.76 454.33 Tm (., )Tj EMC ET BT /T1_2 1 Tf 0 Tc 23.2001 0 0 23.2001 441.38 447.36 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 5.9001 0 0 5.9001 178.16 441.36 Tm (I )Tj EMC /Suspect <>BDC /T1_1 1 Tf 10.6 0 0 10.6 272.76 442.57 Tm (p )Tj EMC ET BT /T1_0 1 Tf 27.6 0 0 27.6 440.79 436.8 Tm (-)Tj 13.8 0 0 13.8 177.68 425.05 Tm (' )Tj ET BT /Suspect <>BDC /T1_1 1 Tf -0.035 Tc 7.8289 0 0 10.6 272.59 430.8 Tm (q_ )Tj EMC ET BT /T1_2 1 Tf 0 Tc 23.2001 0 0 23.2001 438.98 427.21 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 6.6218 0 0 6.4001 175.93 419.77 Tm (10 )Tj EMC /Suspect <>BDC /T1_1 1 Tf 6.4627 0 0 5 267.62 418.57 Tm (_jJL )Tj EMC ET BT /T1_0 1 Tf 0 Tc 30.8 0 0 30.8 440.75 415.21 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 0.05 Tc 9.6149 0 0 5.8001 175.66 409.21 Tm (II )Tj EMC /Suspect <>BDC /T1_1 1 Tf 8.896 0 0 5.1 269.61 408.49 Tm (/\( )Tj EMC ET BT /T1_2 1 Tf 0 Tc 23.2001 0 0 23.2001 440.9 403.68 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 6.4459 0 0 6.5001 175.46 397.93 Tm (12 )Tj EMC /Suspect <>BDC /T1_1 1 Tf 0.0021 Tc 8.2 0 0 8.2 269.71 395.28 Tm (ft.. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 24.8 0 0 24.8 440.58 392.64 Tm (-)Tj /T1_2 1 Tf 0.05 Tc 12.1654 0 0 5.9001 175.69 387.13 Tm (ll )Tj ET BT /Suspect <>BDC /T1_3 1 Tf 18.7755 0 0 12 271.78 383.28 Tm (li )Tj EMC ET BT /T1_0 1 Tf 0 Tc 27.6 0 0 27.6 440.79 382.57 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0004 Tc 6.2 0 0 6.2 175.23 376.8 Tm (14 )Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 3.84 0 0 7.68 270.24 372.24 Tm <0048007E003A0020>Tj EMC ET BT /T1_2 1 Tf 28.4 0 0 28.4 441.33 370.33 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 8.3 0 0 8.3 174.81 365.28 Tm (u )Tj EMC /Suspect <>BDC /T1_1 1 Tf -0.035 Tc 7.9391 0 0 13.6 270.99 363.13 Tm (,.r:, )Tj EMC /Suspect <>BDC /T1_0 1 Tf 9.8506 0 0 14 175.04 351.13 Tm (\225\225 )Tj EMC /Suspect <>BDC /T1_3 1 Tf 0.05 Tc 14.9241 0 0 12 270.85 349.68 Tm (li )Tj EMC ET BT /T1_2 1 Tf 0 Tc 23.2001 0 0 23.2001 440.9 348.24 Tm (-)Tj /T1_0 1 Tf 0.05 Tc 6.6218 0 0 6.2 174.97 342.96 Tm (17 )Tj ET BT /Suspect <>BDC /T1_0 1 Tf -0.0305 Tc 12.8 0 0 12.8 269.17 338.89 Tm (l2 )Tj EMC ET BT /T1_0 1 Tf 0 Tc 24.8 0 0 24.8 442.5 337.21 Tm (-)Tj ET BT /Suspect <>BDC /T1_2 1 Tf 0.05 Tc 10.489 0 0 5.9001 175.15 331.93 Tm (II )Tj EMC /Suspect <>BDC /T1_3 1 Tf -0.035 Tc 8.9924 0 0 11.5 269.92 327.61 Tm (Jr. )Tj EMC ET BT /T1_0 1 Tf 0 Tc 24.8 0 0 24.8 440.58 327.61 Tm (-)Tj 0.05 Tc 16.1807 0 0 13.8 174.77 315.85 Tm ('' )Tj ET BT /Suspect <>BDC /T1_3 1 Tf 15.6092 0 0 13.6 269.4 316.08 Tm (l! )Tj EMC ET BT /T1_0 1 Tf 0 Tc 34 0 0 34 443.11 314.41 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.0314 Tc 6.4001 0 0 6.4001 174.44 310.33 Tm (20 )Tj EMC /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 21.3 0 0 15 269.52 306.24 Tm (ltk )Tj EMC /Suspect <>BDC -0.0195 Tc 12.2 0 0 12.2 307.37 307.21 Tm (per )Tj EMC ET BT /T1_2 1 Tf 0 Tc 13.8 0 0 13.8 337.55 308.89 Tm (. )Tj ET BT /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 36.453 0 0 36.8 342.06 308.89 Tm (,, )Tj EMC ET BT /T1_2 1 Tf 0 Tc 16 0 0 16 361.97 308.89 Tm (. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 2.9001 0 0 2.9001 180.69 306.73 Tm (e )Tj EMC ET BT /T1_2 1 Tf 30.8 0 0 30.8 188.83 298.33 Tm (-)Tj 11.5 0 0 11.5 206.33 306.49 Tm (. )Tj ET endstream endobj 97 0 obj <>stream Hd͊zy8 >sRhF^#y QG#Oç==o/ϧ;c_mӷKv|~_oo~y>}~W=|z>{O݇q~?>Ï?o+~ߒ~;%zΏx߽w;>lp?(O?{wٸ^ PZUuTGu^5P5FjFDMԤU PjVjUmFmک]uPuNNE]E5|| _#_k55|| _#_k55|| _#_k55|| _#_k5Z||-_+_kZ||-_+_kZ||-_+_kZ||-_+_ku:||_'_uu:||_'_uu:||_'_uu:||_'_uz||=_/_z||=_/_z||=_/_z||=_/_ || ߀o77 || ߀o77 || ߀o77 || ߀o77 KG#(~? ?G#(~? ?G#(~? ?G#(~? ?z $߄o77MM&|| $߄o77MM&|| $߄o77MM&|| $߄o77MM&||3,ߌo77f||3,ߌo77f||3,ߌo77f||3,ߌo77f|| "߂oȷ[--|| "߂oȷ[--|| "߂oȷ[--|| "߂oȷ[--||+*ߊoŷʷ[V||+*ߊoŷʷ[V||+*ߊoŷʷ[V||+*ߊoŷʷ[V|| 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D3Dt!چ@S9VFCHC(F2>Bn'D4[vÕgx $r08 L "f,rtfILG G{'# ΕM-t!wNT{Az֓^?AG3rgbƿq}  ޿⫿%ZiixkNn,i]Ä !zMӏ={н>DIkL 2gQkC,j= A!(rl]9T,3A1QAPA9 rT0Rsʤ@\2Hk`h;%+["t^a5[A hC`C8 ԓC:AiGM! 2 #@R ! @ 22iCkd0MCDBr @ReHWR@b dAAD"9A#M)QD"%G!0xf0Ad`*-0ilA2c!!9  DM5ON;!iT""TA_TOH+&MB'qi?ǧڪki;MUUl-iM6jN i4 h2:#XVڝi ȠeDp\ " 2p5SiArCȼA8C$s@U04#dSɄC$ݢ]"=dh4A9G'Ј3X%A$ gCftm k RŐ7 =3 3A AdNCf4Akr[ !#[ 8!PCd.nE^f @0AR< ӽ2 .@kb9 rH!,hC#\؎ka0@i8Alr DD8iݦ2]'jd4C9b S_6l(".Ezj2qʂ!j" POL*`DXAڧ~ꫮt꾟}Uo {A;PH5]U@GF 2VDL3* @~kzh44aj a|,g< 5M4;UAligC4EPd @G0 12 rr"U I!vBC3&p9؈0DC X"RBB"x!>a]TM0"28)Ad#rl" >/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 107 0 obj <>stream BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (25) Tj -197.04 664.08 TD 0.001 Tc (\(1\)) Tj 27.12 0 TD -0.0018 Tc -0.0011 Tw (Test Gages.) Tj ET 131.52 701.52 70.08 0.72 re f BT 201.6 702.96 TD 0 Tc -0.003 Tw ( The general purpose test gage has an accuracy of) Tj -115.2 -13.68 TD -0.0009 Tc -0.002 Tw (1/4 of 1 percent full-scale range, a diameter of 4-1/2, 6, or 8-1/2 in.,) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (a knife-edge pointer, and a mirrored dial. General purpose test gages) Tj T* 0 Tc -0.0032 Tw (are recommended for such applications as measurement of chamber) Tj T* 0 Tc -0.0034 Tw (pressure in triaxial testing. Their greater accuracy and superior con-) Tj T* 0 Tc -0.003 Tw (struction compared to the gages described in subparagraphs \(2\) and \(3\)) Tj T* -0 Tc -0.0027 Tw (below are well worth the higher initial cost. A means for zero setting) Tj T* 0 Tc -0.0032 Tw (of the pointer is provided. Calibration procedure for these gages is) Tj T* -0 Tc -0.0023 Tw (given in paragraph d. Three types of test gages are shown in Fig. 18.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0.0012 Tc -0.0017 Tw (High Quality Gages.) Tj ET 131.52 564.72 122.64 0.72 re f BT 254.16 566.16 TD -0 Tc -0.0028 Tw ( These gages are manufactured primarily) Tj -167.76 -13.68 TD 0 Tc -0.0034 Tw (for the process chemical industry. They are sold under a variety of) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (trade names such as Mastergauge, Duragauge, and Supergauge \(Fig. 19\).) Tj T* -0 Tc -0.0027 Tw (Accuracy is 1/2 of 1 percent of full scale; dial size is 4-1/2 in. in di-) Tj T* 0 Tc -0.0032 Tw (ameter or larger. A provision is made for zeroing the gage pointer.) Tj T* -0 Tc -0.0027 Tw (Cases for these gages are cast metal or molded one-piece plastic.) Tj T* -0 Tc -0.0028 Tw (These gages are considerably less expensive than the general-purpose) Tj T* -0 Tc -0.0022 Tw (test gages and can be used in soils laboratory testing. Calibration pro-) Tj T* 0 Tc -0.0032 Tw (cedure for these gages is given in paragraph d.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD -0 Tc -0.0022 Tw ("Industrial" Gages.) Tj ET 131.52 427.92 114.72 0.72 re f BT 246.24 429.36 TD 0 Tc -0.003 Tw ( These gages are similar in case construc-) Tj -159.84 -13.68 TD -0.001 Tc -0.0019 Tw (tion to those described above. Dials are 3-1/2 in. in diameter and) Tj 0 -13.68 TD 0 Tc -0.0033 Tw (larger. Accuracy is 1. percent over the middle half of the range, and) Tj T* 0 Tc -0.0032 Tw (1-1/2 percent over the remainder. No means for zero setting of the) Tj T* 0.0008 Tc -0.0036 Tw (pointer is provided. Because of their poorer construction and rela-) Tj T* -0 Tc -0.0026 Tw (tively low accuracy, it is not recommended that industrial gages be) Tj T* -0 Tc -0.0023 Tw (calibrated. Use of these gages should be limited to those places where) Tj T* 0 Tc -0.0033 Tw (accuracy of pressure measurement is not important.) Tj 18 -27.36 TD 0.0014 Tc 0 Tw (c.) Tj 18 0 TD 0 Tc (Transducers.) Tj ET 122.4 304.8 78.48 0.72 re f BT 200.88 306.24 TD 0 Tc -0.0032 Tw ( Several types of transducers are used in the) Tj -114.48 -13.68 TD 0 Tc -0.003 Tw (measurement of pressure. The calibration procedures as given by the) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (manufacturers should be followed.. A deadweight gage tester or a pre-) Tj T* -0 Tc -0.0023 Tw (cision laboratory test gage should be used as a primary standard.) Tj T* 0 Tc -0.0032 Tw (Where the sensing element in the transducer consists of strain gages) Tj T* 0 Tc -0.0032 Tw (connected to form a four-arm bridge \(Fig. 20\), the output is dependent) Tj T* -0 Tc -0.0025 Tw (upon the input voltage. In this type of system, it is imperative that high) Tj T* -0 Tc -0.0024 Tw (quality power supplies be used to ensure a constant input voltage.) Tj T* -0 Tc -0.0027 Tw (Transducers usually have good linearity and low hysteresis. Their very) Tj T* -0 Tc -0.0027 Tw (small volume change with pressure makes them particularly suited for) Tj T* 0 Tc -0.0032 Tw (the measurement of pore water pressure in soils testing. The proce-) Tj T* 0 Tc -0.0032 Tw (dure for calibration of transducers is given in paragraph d.) Tj 18 -27.36 TD -0.001 Tc 0 Tw (d.) Tj 18 0 TD 0 Tc -0.0033 Tw (Procedure for Calibration of Pressure Gages and Transducers) Tj ET 122.4 126.96 368.88 0.72 re f BT 86.4 114.72 TD -0.0017 Tc -0.0012 Tw (\(Fig. 13\).) Tj ET 86.4 113.28 53.52 0.72 re f BT 139.92 114.72 TD -0 Tc -0.0028 Tw ( All pressure gages should be calibrated before being first) Tj -53.52 -13.68 TD -0 Tc -0.0027 Tw (used. Gages that have been accidentally subjected to excess pressure) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (or have been dropped should be checked before using. The gage to be) Tj ET endstream endobj 108 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 109 0 obj [110 0 R 111 0 R 112 0 R 113 0 R] endobj 110 0 obj <>stream q 324 0 0 151.44 146.64 561.84 cm /im17 Do endstream endobj 111 0 obj <>stream Q q 218.64 0 0 144.24 199.44 363.84 cm /im18 Do endstream endobj 112 0 obj <>stream Q q 294.24 0 0 138 161.52 164.88 cm /im19 Do endstream endobj 113 0 obj <>stream Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (26) Tj -163.2 499.92 TD -0 Tc -0.0024 Tw (Fig. 18. Typical general purpose Bourdon tube test gages) Tj 86.4 -205.2 TD -0.0017 Tc -0.0012 Tw (Fig. 19 "High quality" gages) Tj -36 -205.2 TD -0 Tc -0.0024 Tw (Fig. 20. 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@6N"0ؾ@67`|k^܊ ÐKNCo<H f!ù 18鏐3-o;% Tdk*D 3HBVkW_d8dYi).(re,DCA `łHmAK J-frB@ad"9 7·2Y d6 J;_!XKjPb2CL9H2ZbC_C L/¡ ˄ gP"C0 xk49q,ᖸ@θ@eAh-Yqـ[%īK26hm(:+e4A6Ap oys"p ֈe B`mtf`@B9 @b@K v\ `z,6 rf2P+%`v#`v0-v:E@k s|^ᅈ endstream endobj 117 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 118 0 obj <>stream BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -173.04 -689.28 TD -0.0058 Tc 0 Tw (27) Tj -215.04 664.08 TD 0 Tc -0.0029 Tw (calibrated should be connected to a primary standard for the measure-) Tj 0 -13.68 TD 0 Tc -0.0031 Tw (ment of pressure, examples of which were described in paragraph a) Tj T* -0 Tc -0.0023 Tw (\(Fig. 13\). The gage must be mounted in the position in which it is de-) Tj T* 0 Tc -0.0029 Tw (signed to be used \(usually vertical\). With no pressure applied, the) Tj T* 0 Tc -0.0033 Tw (pointer should be set on zero if necessary.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD 0 Tc -0.0029 Tw (Slowly increase the pressure on the gage and observe the move-) Tj -45.12 -13.68 TD 0 Tc -0.0035 Tw (ment of the pointer to full range of pressure. ) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Slowly release the pressure and observe the zero position of the) Tj -45.12 -13.68 TD 0 Tc -0.0033 Tw (pointer; reset if necessary.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD -0 Tc -0.0026 Tw (Select approximately ten equally spaced intervals of pressure) Tj -45.12 -13.68 TD 0 Tc -0.0031 Tw (covering the range of the gage. This number may be increased or de-) Tj 0 -13.68 TD 0 Tc -0.003 Tw (creased, depending upon the construction of the gage. Generally, it is) Tj T* -0 Tc -0.0029 Tw (more convenient to use the major divisions of a gage as check points in) Tj T* -0.0011 Tc -0.0018 Tw (the calibration.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (Apply pressure to the gage in the desired increments, reading) Tj -45.12 -13.68 TD 0 Tc -0.003 Tw (the primary standard and the corresponding reading of the gage being) Tj 0 -13.68 TD -0.0013 Tc 0 Tw (calibrated.) Tj 18 -27.36 TD 0.001 Tc (\(5\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (If the gage reading does not correspond to the primary standard,) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (a table of true pressures versus gage readings should be made and used) Tj 0 -13.68 TD 0 Tc -0.0033 Tw (to obtain the correct test pressures.) Tj 18 -27.36 TD -0.0014 Tc 0 Tw (e.) Tj 18 0 TD 0 Tc (Manometers.) Tj ET 122.4 345.84 78.72 0.72 re f BT 201.12 347.28 TD 0 Tc -0.0035 Tw ( The accuracy of manometers depends upon the ac-) Tj -114.72 -13.68 TD -0 Tc -0.0026 Tw (curacy of measurement of the head of liquid and its density. Calibration) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (of manometers would involve a check on the accuracy of the scale used) Tj T* 0 Tc -0.003 Tw (to measure height to the surface of the liquid. A cathetometer is very) Tj T* -0 Tc -0.0028 Tw (useful for this if the distance to be measured does not exceed 100 cm.) Tj T* 0 Tc -0.003 Tw (For precise measurement, the temperature of the liquid must be deter-) Tj T* 0 Tc -0.0029 Tw (mined and its corresponding density obtained. Manometers are very) Tj T* 0 Tc -0.0032 Tw (useful for measuring small pressures accurately.) Tj 0 -27.36 TD -0.0043 Tc 0 Tw (9.) Tj 18 0 TD 0 Tc -0.003 Tw (Temperature Measurements.) Tj ET 104.4 222.72 174.96 0.72 re f BT 104.4 196.8 TD -0.0043 Tc 0 Tw (a.) Tj 18 0 TD 0 Tc (Thermometers.) Tj ET 122.4 195.36 91.68 0.72 re f BT 214.08 196.8 TD -0 Tc -0.0026 Tw ( Thermometers may be of the following types:) Tj -127.68 -13.68 TD -0 Tc -0.0023 Tw (\(1\) liquid-filled glass, \(2\) bimetallic strip, \(3\) resistance, and) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (\(4\) thermocouple. Discussions of each type and methods of calibration) Tj T* -0.0009 Tc 0 Tw (follow.) Tj 18 -27.36 TD 0.001 Tc (\(1\)) Tj 27.12 0 TD -0.001 Tc -0.0019 Tw (Liquid-Filled Glass Thermometers.) Tj ET 131.52 126.96 210.72 0.72 re f BT 342.24 128.4 TD 0.0011 Tc -0.004 Tw ( A detailed procedure for) Tj -255.84 -13.68 TD -0 Tc -0.0026 Tw (testing this type of thermometer is given in ASTM Test Method E 77-66) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (\(reference 1\); calibration methods for it are beyond the scope of this) Tj T* 0 Tc -0.003 Tw (manual. Mercury filled thermometers often have a separation of the) Tj ET endstream endobj 119 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 120 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 215.04 -689.28 TD -0.0058 Tc 0 Tw (28) Tj -215.04 664.08 TD 0 Tc -0.003 Tw (liquid column during shipment and should be inspected upon receipt.) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (For thermometers with an expansion chamber, separated columns) Tj T* -0 Tc -0.0026 Tw (can be joined by heating the bulb \(avoid direct flame\) until the mer-) Tj T* 0 Tc -0.0029 Tw (cury column is driven into the chamber. Alternatively, the separated) Tj T* -0 Tc -0.0026 Tw (portions can be united by cooling the bulb in dry ice to draw the main) Tj T* -0 Tc -0.0028 Tw (column and separated portions together. For either remedial method,) Tj T* -0 Tc -0.0023 Tw (the thermometer may be tapped against a pad of paper to assist in re-) Tj T* -0 Tc -0.0028 Tw (joining the separated column.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0025 Tw (Bimetallic Strip Thermometers.) Tj ET 131.52 578.4 191.04 0.72 re f BT 322.56 579.84 TD -0 Tc -0.0029 Tw ( Bimetallic strip thermom-) Tj -236.16 -13.68 TD -0 Tc -0.0025 Tw (eters are generally of the dial type, where the actuating element is a) Tj 0 -13.68 TD -0 Tc -0.0022 Tw (bimetallic strip that causes a hand to rotate as the temperature) Tj T* 0 Tc -0.003 Tw (changes. This type of thermometer is generally not used where rela-) Tj T* 0 Tc -0.0032 Tw (tively accurate temperature measurements are required. The proce-) Tj T* -0 Tc -0.0027 Tw (dure for bimetallic strip thermometer calibration is similar to that for) Tj T* -0 Tc -0.0025 Tw (the liquid-filled glass thermometer.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD 0 Tc -0.0029 Tw (Resistance Thermometers.) Tj ET 131.52 468.96 159.6 0.72 re f BT 291.12 470.4 TD 0 Tc -0.0033 Tw ( Resistance thermometers depend) Tj -204.72 -13.68 TD 0 Tc -0.003 Tw (upon the change in electrical resistance of a wire, which is caused by) Tj 0 -13.68 TD -0 Tc -0.0024 Tw (a change in temperature. Resistance thermometers are available in) Tj T* -0 Tc -0.0028 Tw (several ranges of temperature from subzero -75 C to 300 C. The) Tj T* -0 Tc -0.0026 Tw (usual range for an indicator is 50 deg minimum span with an accuracy) Tj T* -0 Tc -0.0027 Tw (of 1/2 to 1 percent of the range. An indicator may, with appropriate) Tj T* 0 Tc -0.0031 Tw (switches, read temperatures from several sensors. Since the output) Tj T* -0 Tc -0.0027 Tw (is an electrical signal, resistance thermometers may be used for the) Tj T* 0 Tc -0.0031 Tw (automatic recording of temperatures in remote or inaccessible places.) Tj T* -0 Tc -0.0027 Tw (The calibration of resistance thermometers is similar to that for the) Tj T* -0 Tc -0.0022 Tw (liquid-in-glass type.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD 0 Tc (Thermocouples.) Tj ET 131.52 304.8 94.56 0.72 re f BT 226.08 306.24 TD 0 Tc -0.0031 Tw ( Thermocouples operate on the principle that) Tj -139.68 -13.68 TD -0 Tc -0.0029 Tw (when the junction of two different metals is heated, an electromotive) Tj 0 -13.68 TD -0 Tc -0.0029 Tw (force is generated that is proportional to the temperature applied.) Tj T* 0 Tc -0.0031 Tw (While thermocouples are primarily used for measuring elevated tem-) Tj T* 0 Tc -0.0034 Tw (peratures \(furnaces, ovens, etc.\), they may be used for room tempera-) Tj T* -0 Tc -0.0021 Tw (tures or below. The output is an electrical signal that makes it suited) Tj T* 0 Tc -0.0031 Tw (for the automatic recording of temperatures. To calibrate thermo-) Tj T* -0 Tc -0.0027 Tw (couples, the fixed points of melting ice and steam are used. The next) Tj T* -0 Tc -0.0023 Tw (higher fixed point is the solidification point of pure tin at 231.91 C.) Tj 18 -27.36 TD -0.0043 Tc 0 Tw (b.) Tj 18 0 TD -0 Tc -0.0026 Tw (Temperature Variation Within Ovens.) Tj ET 122.4 168 229.44 0.72 re f BT 351.84 169.44 TD 0.0008 Tc -0.0037 Tw ( Ovens occupy an impor-) Tj -265.44 -13.68 TD 0 Tc -0.003 Tw (tant place in every soils laboratory, primarily for the numerous deter-) Tj 0 -13.68 TD 0 Tc -0.0031 Tw (minations of water content required. It is therefore necessary that) Tj T* -0 Tc -0.0023 Tw (they be reliable in operation. For most soils testing, the temperature) Tj T* 0.0008 Tc -0.0037 Tw (control should maintain the temperature at 110 \261 5 C. The mechanical) Tj T* 0 Tc -0.0035 Tw (convection or forced-draft ovens are preferred, as they maintain a) Tj T* 0 Tc -0.0033 Tw (more uniform temperature, throughout the oven. To determine the) Tj ET endstream endobj 121 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 122 0 obj <>stream BT 301.44 38.88 TD 0 0 0 rg /F0 12.96 Tf -0.0058 Tc 0 Tw (29) Tj 131.04 706.8 TD -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 42 -13.68 TD -0.0008 Tc -0.0021 Tw (Change 1) Tj -4.56 -13.68 TD -0.0025 Tc -0 Tw (10 Mar 86) Tj -383.52 -27.36 TD -0 Tc -0.0025 Tw (variation of temperature at various locations within an oven \(ASTM) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (E 145-68, reference 3\), thermocouples or resistance thermometers) Tj T* -0 Tc -0.0025 Tw (should be placed at the eight corners, with 2 in. of air space in all di-) Tj T* -0 Tc -0.0025 Tw (rections. An additional device should be placed at approximately the) Tj T* 0 Tc -0.0031 Tw (geometric center of the chamber. The temperatures at the various lo-) Tj T* 0 Tc -0.0029 Tw (cations should then be determined periodically for a period of 24 hr.) Tj T* 0.0014 Tc -0.0043 Tw (The maximum variation for any location should not exceed \2615 C from) Tj T* -0 Tc -0.0024 Tw (110 C. The ambient room temperature should not vary more than) Tj T* -0 Tc -0.0026 Tw (10 C during the test. The line voltage for electrically heated ovens) Tj T* 0 Tc -0.0031 Tw (should not vary more than 5 percent during the test.) Tj 0 -27.36 TD -0.0048 Tc 0 Tw (10.) Tj 36 0 TD -0 Tc -0.0025 Tw (Time Measurements.) Tj ET 122.4 539.04 126.96 0.72 re f BT 249.36 540.48 TD 0.0011 Tc -0.004 Tw ( The necessity for accurate frequency con-) Tj -162.96 -13.68 TD 0 Tc -0.0032 Tw (trol that resulted from the development of large integrated electric) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (power distribution networks has made the electric clock a time stand-) Tj T* -0 Tc -0.0027 Tw (ard for all but the most precise time measurements. Such networks) Tj T* 0.0021 Tc -0.0049 Tw (control frequency within \2610.1 of 1 percent; electric clocks connected) Tj T* 0 Tc -0.0031 Tw (to such systems would have a corresponding accuracy in time meas-) Tj T* 0 Tc -0.0029 Tw (urement. It is important that electric clocks used for timing soil tests) Tj T* -0 Tc -0.0028 Tw (have some means for indicating an interruption of power. It is possible) Tj T* -0 Tc -0.0028 Tw (for some electric clocks to slow down with age and still keep running.) Tj T* -0 Tc -0.0026 Tw (Older clocks, particularly those that are noisy in operation, should be) Tj T* 0 Tc -0.0032 Tw (checked frequently to determine their accuracy. Stopwatches and) Tj T* -0 Tc -0.0028 Tw (wristwatches with sweep second hands are satisfactory and convenient) Tj T* -0 Tc -0.0025 Tw (for timing many of the testing operations in the soils laboratory.) Tj 0 -27.36 TD -0.0048 Tc 0 Tw (11.) Tj 36 0 TD 0 Tc -0.0031 Tw (Other Measurements.) Tj ET 122.4 347.52 131.52 0.72 re f BT 104.4 321.6 TD -0.0043 Tc 0 Tw (a.) Tj 18 0 TD -0.0009 Tc (Levelness.) Tj ET 122.4 320.16 62.64 0.72 re f BT 185.04 321.6 TD -0 Tc -0.0028 Tw ( For checking the levelness of testing equipment,) Tj -98.64 -13.68 TD -0 Tc -0.0027 Tw (levels of various degrees of accuracy are available from the familiar) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (carpenter\222s level to the precision machinist\222s level that is accurate to) Tj T* -0 Tc -0.0024 Tw (0.0005 in. per ft. Any desired degree of accuracy may be obtained by) Tj T* 0 Tc -0.0032 Tw (selecting the proper level.) Tj -36 -27.36 TD 0 Tc 0 Tw (*) Tj 36 0 TD -0.0043 Tc (b.) Tj 18 0 TD -0 Tc -0.0026 Tw (Calibration of Mechanical Compaction Rammers.) Tj ET 104.4 238.08 294.96 0.72 re f BT 399.36 239.52 TD 0.0009 Tc -0.0038 Tw ( Mechanical com-) Tj -312.96 -13.68 TD 0 Tc -0.0032 Tw (paction rammers used on the compaction tests described in Appendix VI) Tj 0 -13.68 TD -0.0013 Tc -0.0016 Tw (of EM 1110-2-1906 must be calibrated against the results obtained by the) Tj T* -0 Tc -0.0027 Tw (appropriate manual rammer. Calibration consists of comparing the re-) Tj T* 0 Tc -0.0031 Tw (suits of compaction using the mechanical rammer with results of compac-) Tj T* -0 Tc -0.0025 Tw (tion using the manual rammer. The compactor must be calibrated inde-) Tj T* 0 Tc -0.0035 Tw (pendently for standard effort and modified effort compaction, and for use) Tj T* 0 Tc -0.0029 Tw (with the sector-shaped foot as well as the circular foot.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0022 Tw (Calibration Frequency.) Tj ET 131.52 114.96 138.72 0.72 re f BT 270.24 116.4 TD -0 Tc -0.0026 Tw ( The mechanical rammer should be cali-) Tj -183.84 -13.68 TD 0 Tc -0.003 Tw (brated before initial use, near the end of each period during which the) Tj 0 -13.68 TD -0 Tc -0.0024 Tw (mold was filled 500 times, before use after anything including repairs,) Tj T* -0 Tc -0.0026 Tw (which may affect test results, whenever test results are questionable,) Tj ET endstream endobj 123 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 124 0 obj <>stream BT 86.4 745.68 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -13.68 TD -0.0008 Tc -0.0021 Tw (Change 1) Tj T* -0.0025 Tc -0 Tw (10 Mar 86) Tj -36 -27.36 TD 0 Tc 0 Tw (*) Tj 36 0 TD 0 Tc -0.0031 Tw (and before use after any 6-month period during which the rammer was) Tj 0 -13.68 TD -0.001 Tc -0.0019 Tw (not calibrated.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (Preliminary Checks.) Tj ET 131.52 648.48 122.88 0.72 re f BT 254.4 649.92 TD -0 Tc -0.0029 Tw ( Before beginning calibration, check the) Tj -168 -13.68 TD 0 Tc -0.0031 Tw (mechanical compactor for proper operation and allow the rammer to) Tj 0 -13.68 TD 0 Tc -0.003 Tw (operate for the equivalent of several compaction specimens. The per-) Tj T* 0 Tc -0.0033 Tw (formance of mechanical compactors is subject to change over time due) Tj T* 0 Tc -0.003 Tw (to variations in the amount of friction in the drop weight guiding mech-) Tj T* -0 Tc -0.0025 Tw (anisms, and these changes can take place within short period and after) Tj T* -0 Tc -0.0026 Tw (little use. Smooth nonbinding operation of the drop weight shaft should) Tj T* 0 Tc -0.0035 Tw (be checked over the entire range of movement of the rammer. Improper) Tj T* -0 Tc -0.0027 Tw (operation of the raising and release mechanisms can also cause serious) Tj T* 0 Tc -0.0035 Tw (errors in the operation of these rammers. Set up the compactor for the) Tj T* 0 Tc -0.0034 Tw (compaction procedure to be performed. The height of drop must be) Tj T* -0 Tc -0.0024 Tw (checked with the rammer at normal operating speed as this value will) Tj T* 0 Tc -0.0034 Tw (differ from the height of drop checked in slow or intermittent operation.) Tj T* -0 Tc -0.0028 Tw (The height of drop can most easily be checked using a cathetometer to) Tj T* -0 Tc -0.0027 Tw (note the level to which a mark on the rammer shaft rises when in) Tj T* -0 Tc -0.0028 Tw (operation. The difference between this height and the height of the mark) Tj T* -0 Tc -0.0028 Tw (when at rest in the down position is the height of drop. Allow the rammer) Tj T* 0 Tc -0.0031 Tw (to fall on a uniform unchanging surface such as several thicknesses of) Tj T* 0 Tc -0.0031 Tw (rubber cut from a truck inner tube placed in the compaction mold.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (Calibration Procedure.) Tj ET 131.52 374.88 136.32 0.72 re f BT 267.84 376.32 TD -0 Tc -0.0023 Tw ( Sufficient clay soil having a plasticity) Tj -181.44 -13.68 TD -0 Tc -0.0027 Tw (index of at least 20 should be prepared for compaction as described in) Tj 0 -13.68 TD -0 Tc -0.0022 Tw (Appendix VI of EM 1110-2-1906. Soils of lower plasticity should not be) Tj T* -0 Tc -0.0025 Tw (used as these soils will not reliably display differences in density due to) Tj T* 0 Tc -0.0035 Tw (differences in rammer performance. For the purpose of calibration) Tj T* -0 Tc -0.0023 Tw (testing, any material retained on the No. 4 sieve may be discarded during) Tj T* -0 Tc -0.0027 Tw (preparation of the material. Enough soil should be prepared at each) Tj T* -0 Tc -0.0027 Tw (water content to compact at least two specimens. Mix batch thoroughly) Tj T* 0 Tc -0.003 Tw (prior to removing material for compaction. Compact specimens at each) Tj T* -0 Tc -0.0026 Tw (water content using both the mechanical compactor and the manual) Tj T* -0 Tc -0.0024 Tw (rammer. It is desirable to compact both specimens at a given water) Tj T* -0 Tc -0.0028 Tw (content before moving on to the next water content so as to minimize any) Tj T* 0 Tc -0.0032 Tw (differences due to different setting times. Prepare separate compaction) Tj T* 0 Tc -0.0031 Tw (curves for soil compacted with each rammer. The maximum dry density) Tj T* 0 Tc -0.0031 Tw (of the soil compacted using the mechanical rammer should differ by no) Tj T* -0 Tc -0.0028 Tw (more than 1 pcf from the results obtained with the hand rammer.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (Adjustment of Mechanical Rammer.) Tj ET 131.52 142.32 216.24 0.72 re f BT 347.76 143.76 TD 0.001 Tc -0.0039 Tw ( If the results produced by) Tj -261.36 -13.68 TD 0 Tc -0.0033 Tw (the mechanical rammer differ by more than 1 pcf from that produced by) Tj 0 -13.68 TD 0 Tc -0.0029 Tw (the manual rammer, adjust the height of drop of the mechanical rammer) Tj T* -0 Tc -0.0025 Tw (or, if this is not possible, adjust the drop weight to make the results) Tj T* -0 Tc -0.0029 Tw (produced by the mechanical rammer match those of the manual rammer.) Tj T* 0 Tc -0.0034 Tw (If, after adjustment, the height of drop \(in operation\) or the drop weight ) Tj 438.24 0 TD 0 Tc 0 Tw (*) Tj -228.96 -27.36 TD -0.0032 Tc (29-1) Tj ET endstream endobj 125 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 126 0 obj <>stream BT 432.48 745.68 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 42 -13.68 TD -0.0008 Tc -0.0021 Tw (Change 1) Tj -4.56 -13.68 TD -0.0025 Tc -0 Tw (10 Mar 86) Tj -419.52 -27.36 TD 0 Tc 0 Tw (*) Tj 36 0 TD 0 Tc -0.0035 Tw (of the mechanical rammer, or the product of the height of drop and the) Tj 0 -13.68 TD 0 Tc -0.003 Tw (drop weight deviates more than 10 percent from manual rammer specifica-) Tj T* 0 Tc -0.0032 Tw (tions, the mechanical rammer should be considered in need of repair or) Tj T* 0 Tc -0.0032 Tw (adjustment and removed from service. If, after calibration, the product) Tj T* 0 Tc -0.0033 Tw (of the drop height and the drop weight is less than specified for the com-) Tj T* -0 Tc -0.0022 Tw (parable manual rammer \(5.5 lb-ft for standard compaction and 15 lb-ft) Tj T* 0 Tc -0.0033 Tw (for modified compaction\), the manual rammer should be rechecked for) Tj T* -0 Tc -0.0027 Tw (compliance with specifications, and the operator\222s technique should be) Tj T* -0 Tc -0.0027 Tw (observed to verify that compaction blows are being applied properly be-) Tj T* 0 Tc -0.0033 Tw (fore proceeding. Verify the adequacy of any changes made in the mechan-) Tj T* -0 Tc -0.0028 Tw (ical rammer by compacting three additional pairs of specimens of clay) Tj T* -0 Tc -0.0029 Tw (soil at optimum water content or no more than two percentage points dry) Tj T* -0 Tc -0.0027 Tw (of optimum. One specimen of each pair shall be compacted with the) Tj T* -0 Tc -0.0028 Tw (mechanical compactor and the other specimen with the manual rammer.) Tj T* -0 Tc -0.0026 Tw (Normally, if the soil is mixed thoroughly and care is taken to prevent) Tj T* 0 Tc -0.0032 Tw (moisture loss during testing, the water contents of the compacted speci-) Tj T* -0 Tc -0.0027 Tw (mens will remain quite close and the densities of the compacted specimens) Tj T* -0 Tc -0.0026 Tw (can be compared on the basis of an anticipated water content common to) Tj T* -0 Tc -0.0027 Tw (all the specimens. However, all specimens should be oven-dried and the) Tj T* 0 Tc -0.003 Tw (actual water contents determined to verify assumptions. When preparing) Tj T* -0 Tc -0.0023 Tw (soil for these tests, preparation of somewhat more soil than will actually) Tj T* 0 Tc -0.0032 Tw (be needed tends to reduce the effect of moisture loss in the unused soil.) Tj T* 0 Tc -0.0033 Tw (However, if the water contents of the compacted specimens are found to) Tj T* 0 Tc -0.0034 Tw (vary from specimen to specimen on oven-drying, the dry densities of the) Tj T* -0 Tc -0.0027 Tw (specimens may be adjusted by shifting the water content dry density plot) Tj T* -0 Tc -0.0025 Tw (parallel with the previously obtained compaction curve to an average) Tj T* 0 Tc -0.0031 Tw (water content value for the group of compacted specimens. The average) Tj T* 0 Tc -0.0032 Tw (dry density of the three specimens compacted with the mechanical rammer) Tj T* 0 Tc -0.0029 Tw (should not deviate from the average of the specimens compacted with the) Tj T* -0 Tc -0.0024 Tw (manual rammer by more than 1 pcf.) Tj 18 -27.36 TD 0.0014 Tc 0 Tw (c.) Tj 18 0 TD -0 Tc -0.0029 Tw (Calibration of Hydrometers.) Tj ET 122.4 265.44 168.72 0.72 re f BT 291.12 266.88 TD 0 Tc -0.0034 Tw ( The procedures for calibrating) Tj -204.72 -13.68 TD 0 Tc -0.0031 Tw (hydrometers for particle size determinations as contained in) Tj 465.12 0 TD 0 Tc 0 Tw (*) Tj -251.28 -205.2 TD -0.0032 Tc (29-2) Tj ET endstream endobj 127 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 128 0 obj <>stream 0 0 0 rg 86.4 128.16 453.84 1.2 re f BT 86.4 743.52 TD /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 219.6 -689.28 TD -0.0058 Tc 0 Tw (30) Tj -219.6 664.08 TD 0 Tc -0.003 Tw (EM 1110-2-1906, Appendix V, are repeated here for ready reference.) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (The hydrometer shall be calibrated) Tj 220.08 0 TD 0 Tc -0.003 Tw ( to determine its true depth in) Tj -9.6 5.52 TD /F0 7.68 Tf 0.0717 Tc 0 Tw (\(1\)) Tj -210.48 -19.2 TD /F0 12.96 Tf -0 Tc -0.0028 Tw (terms of the hydrometer reading \(Fig. 21\) in the following steps:) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD 0 Tc -0.0029 Tw (Determine the volume of the hydrometer bulb, V) Tj 296.88 0 TD -0.0019 Tc -0.001 Tw (. This may) Tj -5.52 -3.12 TD /F0 7.68 Tf -0.025 Tc 0 Tw (R) Tj -336.48 -10.56 TD /F0 12.96 Tf -0 Tc -0.0025 Tw (be determined in either of two ways:) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(a\)) Tj 27.12 0 TD -0 Tc -0.0023 Tw (By measuring the volume of water displaced. Fill a 1000-cc) Tj -45.12 -13.68 TD -0 Tc -0.0022 Tw (graduate with water to approximately 700 cc. The water temperature) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (should be about 20 C. Observe and record the reading of the water) Tj T* 0 Tc -0.0031 Tw (level. Insert the hydrometer and again observe and record the reading.) Tj T* -0 Tc -0.0027 Tw (The difference in these two readings equals the volume of the bulb plus) Tj T* 0 Tc -0.0031 Tw (the part of the stem that is submerged. The error due to inclusion of) Tj T* -0.0008 Tc -0.0021 Tw (this latter quantity is so small that it may be neglected for practical) Tj T* 0 Tc 0 Tw (purposes.) Tj 18 -27.36 TD 0.001 Tc (\(b\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (By determining the volume from the weight of the hydrometer.) Tj -45.12 -13.68 TD -0 Tc -0.0024 Tw (Weigh the hydrometer to 0.01 g on the laboratory balance. Since the) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (specific gravity of a hydrometer is about unity, the weight in grams) Tj T* 0 Tc -0.0029 Tw (may be recorded as the volume in cubic centimeters. This volume in-) Tj T* 0 Tc -0.003 Tw (cludes the volume of the bulb plus the volume of the stem. The error) Tj T* -0 Tc -0.0025 Tw (due to inclusion of the stem volume is negligible.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD 0 Tc -0.0031 Tw (Determine the area A of the graduate in which the hydrometer) Tj -45.12 -13.68 TD -0 Tc -0.0022 Tw (is to be used by measuring the distance between two graduations. The) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (area A is equal to the volume included between the graduations divided) Tj T* -0 Tc -0.0024 Tw (by the measured distance.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Measure and record the distances from the lowest calibration) Tj -45.12 -13.68 TD 0 Tc -0.0032 Tw (mark on the stem of the hydrometer to each of the other major cali-) Tj 0 -13.68 TD -0.0012 Tc -0.0017 Tw (bration marks, R.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(4\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (Measure and record the distance from the neck of the bulb to) Tj -45.12 -13.68 TD -0.0008 Tc -0.0021 Tw (the lowest calibration mark. The distance H) Tj 267.84 0 TD 0 Tc -0.0034 Tw ( , corresponding to a) Tj -4.32 -3.12 TD /F0 7.68 Tf 0.0499 Tc 0 Tw (1) Tj -263.52 -10.56 TD /F0 12.96 Tf -0 Tc -0.0026 Tw (reading R, equals the sum of the two distances measured in steps \(3\)) Tj 0 -13.68 TD -0 Tc -0.0024 Tw (and \(4\).) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(5\)) Tj 27.12 0 TD 0 Tc -0.003 Tw (Measure the distance from the neck to the tip of the bulb. Re-) Tj -45.12 -13.68 TD -0 Tc -0.0023 Tw (cord this as h, the height of the bulb. The distance, h/2, locates the) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (center of volume of a symmetrical bulb. If a nonsymmetrical bulb is) Tj T* 0 Tc -0.0034 Tw (used, the center of volume can be determined with sufficient accuracy) Tj 27.6 -41.04 TD -0.0009 Tc -0.002 Tw ( ASTM hydrometers 151H or 152H \(ASTM Designation: E 100-66,) Tj -9.6 5.52 TD /F0 7.68 Tf 0.0717 Tc 0 Tw (\(1\)) Tj -18 -19.2 TD /F0 12.96 Tf 0 Tc -0.003 Tw (reference 2\) have a uniform size; therefore, only a single calibration is) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (required, which can be applied to all ASTM hydrometers of this type.) Tj ET endstream endobj 129 0 obj <>/ProcSet[/PDF/Text/ImageB]/XObject<>>>/Rotate 0/Type/Page>> endobj 130 0 obj <>stream q 612 0 0 792 0 0 cm /Im0 Do Q q 0 0 612 792 re 0 0 612 792 re W* n q 91.2001038 0 0 21.1199951 399.3600006 519.3600006 cm BI /W 1 /H 1 /IM true /BPC 1 ID EI Q q 329.2801056 0 0 233.2799988 131.5299988 216.9700012 cm BI /W 1 /H 1 /IM true /BPC 1 ID EI Q Q BT 0 0 0 rg /TT0 12.96 Tf -0.0027 Tc 426.96 743.52 Td (EM 1110-2-1909)Tj -0.0024 Tc 47.52 -15.36 Td (1 Dec 70)Tj -0.0058 Tc -168.48 -689.28 Td (31)Tj -0.0008 Tc -0.0021 Tw -87.6 103.2 Td (Fig. 21. Hydrometer calibration)Tj ET BT /Suspect <>BDC 0 g /T1_0 1 Tf 0 Tc 0 Tw 3 Tr 7.9001 0 0 7.9001 121.15 371.77 Tm (2 )Tj EMC ET BT /T1_0 1 Tf 9.7 0 0 9.7 121.2 366.49 Tm (u )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 10.4 0 0 10.4 120.7 354.73 Tm (! )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 6.7662 0 0 9.3 124.25 342.96 Tm (a: )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 0 Tc 9.4 0 0 9.4 120.47 336.73 Tm (: )Tj EMC /Suspect <>BDC -0.035 Tc 7.1222 0 0 14.8 120.29 324.73 Tm (... )Tj EMC /Suspect <>BDC 0 Tc 9.4 0 0 9.4 120.47 318.96 Tm (: )Tj EMC /Suspect <>BDC -0.035 Tc 6.5171 0 0 9.9 120.4 310.33 Tm (5! )Tj EMC /Suspect <>BDC 0.05 Tc 6.8916 0 0 6.2 120.05 304.57 Tm (Ill )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0 Tc 10.3 0 0 10.3 120.22 298.08 Tm (: )Tj EMC /Suspect <>BDC /C0_0 1 Tf 4.0201 0 0 18.72 243.13 665.04 Tm <006C00220041007E0020>Tj EMC ET BT /T1_1 1 Tf 18 0 0 18 157.75 652.57 Tm (-)Tj /T1_0 1 Tf 0.05 Tc 22.3869 0 0 18.6 175.65 646.33 Tm (----)Tj 25.4512 0 0 21.5 178.5 642.24 Tm (---)Tj 0.0347 Tc 21.6 0 0 21.6 181.9 638.65 Tm (---)Tj 0.05 Tc 22.1966 0 0 21.9 184.78 634.33 Tm (--)Tj ET BT /Suspect <>BDC /T1_1 1 Tf 0 Tc 15.4 0 0 15.4 190.66 627.13 Tm (-)Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 21.6695 0 0 34.8 262.1 579.36 Tm (cr-)Tj EMC /Suspect <>BDC /T1_2 1 Tf 0 Tc 20.5 0 0 20.5 234.14 569.53 Tm (t )Tj EMC /Suspect <>BDC /T1_0 1 Tf 7.6 0 0 7.6 261.8 565.21 Tm (2 )Tj EMC ET BT /T1_0 1 Tf 7.6 0 0 7.6 270.388 565.21 Tm (' )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 18.7001 0 0 18.7001 189.07 562.09 Tm (\225 )Tj EMC /Suspect <>BDC 19.6 0 0 19.6 189.29 549.85 Tm (\225 )Tj EMC /Suspect <>BDC /T1_0 1 Tf -0.035 Tc 15.1841 0 0 17.6 234.92 546.48 Tm (tv,. )Tj EMC /Suspect <>BDC /T1_1 1 Tf 12.1169 0 0 14 235.59 535.21 Tm (Ia;:-)Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 14.3714 0 0 7.9001 162.18 493.68 Tm (./ )Tj EMC /Suspect <>BDC -0.035 Tc 7.8086 0 0 9.9 211.92 493.68 Tm (\\... )Tj EMC /Suspect <>BDC 0 Tc 8.2 0 0 8.2 281.52 493.93 Tm (/ )Tj EMC /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 8.7514 0 0 7.8001 290.43 693.6 Tm (,..--)Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 15.36 0 0 6.24 311.77 692.65 Tm <007E0020>Tj EMC /Suspect <>BDC 15.12 0 0 12.48 290.65 672.97 Tm <007E0020>Tj EMC /Suspect <>BDC 3.4801 0 0 9.36 313.45 672.24 Tm <007E003D002700220020>Tj EMC /Suspect <>BDC 11.52 0 0 10.08 302.4 562.09 Tm <007E0020>Tj EMC /Suspect <>BDC /T1_2 1 Tf -0.035 Tc 17.688 0 0 19.6 302.43 546.72 Tm (\\ij )Tj EMC ET BT /T1_1 1 Tf 0 Tc 11.5 0 0 11.5 310.25 551.53 Tm (. )Tj ET BT /Suspect <>BDC /C0_0 1 Tf 4.74 0 0 5.0401 335.29 685.92 Tm <007E004900210041004F0049004E00470020>Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 12.2603 0 0 6.5001 377.69 685.92 Tm (:A )Tj EMC ET BT /T1_1 1 Tf 0 Tc 6.5001 0 0 6.5001 383.62 641.04 Tm (N )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 9.3568 0 0 6.5001 344.66 634.57 Tm (H, )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0 Tc 9.6 0 0 9.6 383.5 612.24 Tm (v )Tj EMC ET BT /T1_0 1 Tf 21.6 0 0 21.6 332.62 589.45 Tm (-)Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 8.5757 0 0 7.4001 341.46 591.85 Tm (1-)Tj EMC /Suspect <>BDC /T1_1 1 Tf 0 Tc 6.5001 0 0 6.5001 383.61 575.29 Tm (H )Tj EMC /Suspect <>BDC -0.035 Tc 7.2157 0 0 16.9 345.17 570 Tm (., )Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 8.52 0 0 5.5201 332.89 540.72 Tm <002D007E0020>Tj EMC /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 8.2214 0 0 6.5001 389.41 641.04 Tm (OTE: )Tj EMC /Suspect <>BDC 0 Tc 6.5001 0 0 6.5001 390.01 631.45 Tm (A )Tj EMC /Suspect <>BDC 1.338 0 Td (: )Tj EMC /Suspect <>BDC 0.05 Tc 7.7614 0 0 6.5001 406.59 631.45 Tm (INSIDE )Tj EMC /Suspect <>BDC 8.025 0 0 6.5001 438.49 631.45 Tm (AREA )Tj EMC /Suspect <>BDC 7.8346 0 0 6.5001 465.73 631.45 Tm (OF )Tj EMC /Suspect <>BDC 8.1006 0 0 6.5001 404.76 622.57 Tm (GRADUATE )Tj EMC /Suspect <>BDC 7.4838 0 0 6.5001 456.76 622.57 Tm (IN )Tj EMC ET BT /T1_1 1 Tf 6.5592 0 0 6.5001 468.64 622.57 Tm (SQ )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 7.1486 0 0 6.5001 482.54 622.57 Tm (CM )Tj EMC /Suspect <>BDC 7.8453 0 0 6.5001 390.03 611.77 Tm (.. )Tj EMC /Suspect <>BDC 6.9737 0 0 6.5001 398.94 611.77 Tm (:: )Tj EMC /Suspect <>BDC 7.4606 0 0 6.5001 406.32 611.77 Tm (VOL.UME )Tj EMC /Suspect <>BDC 7.8346 0 0 6.5001 446.05 611.77 Tm (OF )Tj EMC /Suspect <>BDC 7.6891 0 0 6.5001 461.1 611.77 Tm (HYOROM\267 )Tj EMC /Suspect <>BDC 8.2189 0 0 6.5001 406.61 603.13 Tm (ETER )Tj EMC /Suspect <>BDC 7.7252 0 0 6.5001 433.95 603.13 Tm (IN )Tj EMC ET BT /T1_1 1 Tf 7.6895 0 0 6.5001 446.05 603.13 Tm (CC )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0 Tc 13.1 0 0 13.1 391.9 592.8 Tm (n )Tj EMC /Suspect <>BDC -0.035 Tc 8.1991 0 0 13.1 398.67 592.8 Tm (:: )Tj EMC /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 8.0899 0 0 6.5001 406.37 592.8 Tm (HEIGHT )Tj EMC /Suspect <>BDC 8.0049 0 0 6.5001 442.93 592.8 Tm (OF )Tj EMC /Suspect <>BDC 7.579 0 0 6.5001 458.22 592.8 Tm (HYOROM\225 )Tj EMC /Suspect <>BDC 8.2189 0 0 6.5001 406.61 583.92 Tm (ETER )Tj EMC ET BT /T1_1 1 Tf 7.3987 0 0 6.5001 434 583.92 Tm (BUL.B )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 7.2424 0 0 6.5001 461.56 583.92 Tm (IN )Tj EMC /Suspect <>BDC 6.8444 0 0 6.5001 473.66 583.92 Tm (CM )Tj EMC /Suspect <>BDC 7.3853 0 0 6.5001 390.3 574.8 Tm (,. )Tj EMC /Suspect <>BDC 6.5378 0 0 6.5001 398.95 574.8 Tm (:: )Tj EMC /Suspect <>BDC 8.1489 0 0 6.5001 406.51 574.8 Tm (TRUE )Tj EMC /Suspect <>BDC 7.9318 0 0 6.5001 433.97 574.8 Tm (HI!IGMT )Tj EMC /Suspect <>BDC 7.8346 0 0 6.5001 470.53 574.8 Tm (OF )Tj EMC /Suspect <>BDC 6.9398 0 0 6.5001 485.67 574.8 Tm (SUS\225 )Tj EMC /Suspect <>BDC 7.5631 0 0 6.5001 406.87 565.92 Tm (PENSION )Tj EMC /Suspect <>BDC 8.222 0 0 6.5001 447.85 565.92 Tm (AaOVE )Tj EMC /Suspect <>BDC 8.0321 0 0 6.5001 481.33 565.92 Tm (CEN\267 )Tj EMC /Suspect <>BDC 8.5172 0 0 6.5001 406.27 557.29 Tm (TEA )Tj EMC /Suspect <>BDC 7.6642 0 0 6.5001 427.81 557.29 Tm (OF )Tj EMC /Suspect <>BDC 7.9283 0 0 6.5001 443.09 557.29 Tm (HYDROMETER )Tj EMC ET BT /T1_1 1 Tf 8.1086 0 0 6.5001 406.47 548.16 Tm (8UL.8 )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 7.4838 0 0 6.5001 433.96 548.16 Tm (IN )Tj EMC /Suspect <>BDC 6.6923 0 0 6.5001 446.3 548.16 Tm (CM )Tj EMC ET BT /T1_0 1 Tf -0.035 Tc 8.6381 0 0 8.8 146.8 483.61 Tm (o. )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 0.05 Tc 8.1532 0 0 7.5001 159.9 483.61 Tm (DETERMINATION )Tj EMC /Suspect <>BDC 8.0049 0 0 7.5001 236.29 483.61 Tm (OF )Tj EMC ET BT /T1_1 1 Tf 8.2329 0 0 7.5001 251.47 483.61 Tm (TRUE )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 8.2106 0 0 7.5001 278.93 483.61 Tm (HEIGHT )Tj EMC /Suspect <>BDC 8.3455 0 0 7.5001 315.24 483.61 Tm (OF )Tj EMC /Suspect <>BDC 7.5403 0 0 7.5001 330.38 483.61 Tm (SUSPENSION )Tj EMC /Suspect <>BDC 7.9736 0 0 7.5001 387.61 483.61 Tm (ABOVE )Tj EMC ET BT /T1_1 1 Tf 8.1461 0 0 7.5001 420.84 483.61 Tm (CENTER )Tj ET BT /Suspect <>BDC /T1_1 1 Tf 7.8346 0 0 7.5001 248.53 473.05 Tm (OF )Tj EMC /Suspect <>BDC 8.1076 0 0 7.5001 263.81 473.05 Tm (HYpROMETER )Tj EMC ET BT /T1_1 1 Tf 7.5561 0 0 7.5001 327.68 473.05 Tm (BUL.B )Tj ET BT /Suspect <>BDC /C0_0 1 Tf 0 Tc 6.0267 0 0 11.28 134.17 459.61 Tm <00B700B7007E002D002D002D002D002D002D002D002D007E002D002D002D002D002D002D002D002D002D002D002D002D007E002D002D007E007E002D002D002D002D002D002D007E002D002D002D002D002D002D002D002D002D002D002D002D002D002D002D002D002D007E0020>Tj EMC /Suspect <>BDC /T1_1 1 Tf -0.035 Tc 15.4027 0 0 20.8 132.34 365.52 Tm (,. )Tj EMC /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 7.848 0 0 7.5001 131.97 312.24 Tm (12 )Tj EMC /Suspect <>BDC /C0_0 1 Tf 0 Tc 6.0861 0 0 10.56 135.61 206.4 Tm <00B7007E002D002D002D002D002D002D007E002D002D002D002D002D002D002D002D005F002E002D002D002D002D002D002D002D002D007E002D002D002D002D002D002D002D002D007E002D002D002D002D002D002D007E002D002D002D002D002D002D002D002D007E0020>Tj EMC /Suspect <>BDC /T1_0 1 Tf 7.4001 0 0 7.4001 143.2 203.53 Tm (0 )Tj EMC /Suspect <>BDC 6.743 0 Td (5 )Tj EMC /Suspect <>BDC 0.05 Tc 7.848 0 0 7.4001 245.97 203.53 Tm (10 )Tj EMC ET BT /T1_0 1 Tf -0.0055 Tc 7.4001 0 0 7.4001 299.5 203.53 Tm (15. )Tj ET BT /Suspect <>BDC /T1_0 1 Tf 0.05 Tc 8.1467 0 0 7.4001 352.03 203.53 Tm (20 )Tj EMC /Suspect <>BDC 6.187 0 Td (25 )Tj EMC /Suspect <>BDC 8.0545 0 0 7.4001 454.71 203.53 Tm (30 )Tj EMC /Suspect <>BDC /T1_1 1 Tf 7.8326 0 0 6.5001 240.54 193.21 Tm (HYDIItOMETEA )Tj EMC /Suspect <>BDC 7.9204 0 0 6.5001 305.34 193.21 Tm (READING, )Tj EMC /Suspect <>BDC 0 Tc 6.5001 0 0 6.5001 350.73 193.21 Tm (R )Tj EMC /Suspect <>BDC -0.035 Tc 6.3341 0 0 9.3 196.39 178.81 Tm (Ia. )Tj EMC /Suspect <>BDC 0.05 Tc 8.2398 0 0 7.5001 209.23 178.81 Tm (TYPICAL. )Tj EMC /Suspect <>BDC 8.0242 0 0 7.5001 252.29 178.81 Tm (HYDROMETER )Tj EMC /Suspect <>BDC 8.0098 0 0 7.5001 316.69 178.81 Tm (CAL.IBRATION )Tj EMC /Suspect <>BDC 8.1069 0 0 7.5001 380.76 178.81 Tm (CURVE )Tj EMC ET endstream endobj 131 0 obj <>stream Hd͊zy8 >sRhF^#y QG#Oç==o/ϧ;c_mӷKv|~_oo~y>}~W=|z>{O݇q~?>Ï?o+~ߒ~;%zΏx߽w;>lp?(O?{wٸ^ PZUuTGu^5P5FjFDMԤU PjVjUmFmک]uPuNNE]E5|| _#_k55|| _#_k55|| _#_k55|| _#_k5Z||-_+_kZ||-_+_kZ||-_+_kZ||-_+_ku:||_'_uu:||_'_uu:||_'_uu:||_'_uz||=_/_z||=_/_z||=_/_z||=_/_ || ߀o77 || ߀o77 || ߀o77 || 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h6;.8!YO)ڈbmL3ay=n$}ԡIk?g3tQYTAI)ْNrOT n)Mv:#b_>[syv/6/>L{":[TvN@ 7R!]x>+?bH?#Lr>CfR &gFZ>w0XUKߢAc.VcN7 6Y&U&+Pð<]k/d+*fCgʑz=$p hD|!=Zd3]~0Rja¢!:D0%crԅiS;#&Iy^IMGiVߚ ,1uZۢG ǒVukrOz8WN% QgVNvG~TqڪV,#l|_˜ICw(>}0ݵ0Τo6\Pˆ~(2MNtX k«&2~D7;<@4^! 1b{A#rmɝ4]N"H;ɥ龊u 4~|-'< ]s+wR $M,;~uvY-BęDV&R Zũd( Q++  *)WYp~aWбW*A1{J|ik0IY!mJDZ* IEK R<.$)/Kc-\|i0XK4:,R"<5l">AC">jbKdNkitwt?Na)LT HɄXTN.㒨V[%oq/≲X&jWOmI {܂'F{zsXDec)д\7K}Eۍک'Z;`JL6<1R2o5ni\պv}I@EQX8g)O7#pQ)7ȣDx{)&ܭDc ee [jM;MNnsVZB`y7fWOڒ^+eد+$|MI%cЎΖt x03ԈKh ,ʭL?6uYhiCn iD+Tjy)΃YdF,(]vNAhAЮ$]fEȝM>N+RU^$lиh굦@>2Np|;vX,Z]ON_N"匧Hq/{?I^"mew\{HfRO)) Xt^(j$oE V4BOtxg)9wgݷZ҇ VX,G<01~d "#=$86dF`!R' v <洳>ШU 7dlسCX1:QwWF0}ᲓD{0/Ɯq9Ipǁtz&8V7pI P(:TOLn Tn *LWk?iV+21dLي^cuYtZQs+x±߅h>zP!CAgy-+=نRd\WG C V8|ֆwa}&TtJ+䶘bgsIL %2*[] pB B5߬0y / vMM\ -爵|GBn+d1'DYZo_` 6<vv\:J[Y_Qq-Fa2Y5eyC\IƙֲWЌ[*6\/ QlN*ޭ=Pd:jdhh6db؋>1B8-㳛4y,:F`E5"VF#71|z_7Rin*$Wy ;3fQl MuZ-Ezc~Bvƥ[Ԇ@d`|j|Z524Cr;"i.B3JAn{KͻG5^8 4m ({QXljA\52J1r`Ո.ǔ 񏍌|K[&,+O0#B8V3;|0 $-U7駈WE8pE"=l%R]TjS/F\mn?ohD$ovtKld«**Xoz"jo%˯xX WGW o?'Z$f<3 &Dƞ}Ь8cѓ'Ґ ,ןش |'E-D`/Qs`^%;W )Ԍs @]<a%ZJڵ; Jmdߒ 9E_9"kԞWh6s!LI&,E{*IhB[tބQ)3: Ρpm`5J㈨o&5S..-5^{jImB;u![}ZnuzԶ<,L OcHcl? endstream endobj 133 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 134 0 obj [135 0 R 136 0 R] endobj 135 0 obj <>stream q 155.52 0 0 49.44 233.28 554.4 cm /im21 Do endstream endobj 136 0 obj <>stream Q BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 217.44 -689.28 TD -0.0058 Tc 0 Tw (32) Tj -217.44 664.08 TD -0 Tc -0.0027 Tw (by projecting the shape of the bulb on a sheet of paper and locating the) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (center of gravity of this projected area. In this latter case the distance) Tj T* -0 Tc -0.0029 Tw (from the top of the bulb to the center of gravity is used in \(6\) below and) Tj T* -0.0014 Tc -0.0015 Tw (in Fig. 21 in place of h/2.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(6\)) Tj 27.12 0 TD 0 Tc -0.0033 Tw (Compute the true distances H) Tj 185.52 0 TD 0.001 Tc -0.0039 Tw ( corresponding to each of the) Tj -5.52 -3.12 TD /F0 7.68 Tf -0.025 Tc 0 Tw (R) Tj -225.12 -10.56 TD /F0 12.96 Tf -0 Tc -0.0022 Tw (major calibration marks, R, from the equation:) Tj 18 -95.76 TD 0.001 Tc 0 Tw (\(7\)) Tj 27.12 0 TD 0 Tc -0.0029 Tw (Plot the curve expressing the relation between H) Tj 298.32 0 TD -0.0011 Tc -0.0018 Tw ( and R as) Tj -5.52 -3.12 TD /F0 7.68 Tf -0.025 Tc 0 Tw (R) Tj -337.92 -10.56 TD /F0 12.96 Tf -0.0008 Tc -0.0021 Tw (shown in Fig. 21. The relation is essentially a straight line for hy-) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (drometers having a streamlined shape.) Tj 18 -27.36 TD -0.001 Tc 0 Tw (d.) Tj 18 0 TD -0 Tc -0.0027 Tw (Compression of Consolidation Equipment.) Tj ET 122.4 468.96 252.24 0.72 re f BT 374.64 470.4 TD 0 Tc -0.003 Tw ( In the consolidation) Tj -288.24 -13.68 TD -0 Tc -0.0028 Tw (test, it is desired to measure only the change in height of the specimen;) Tj 0 -13.68 TD 0 Tc -0.0033 Tw (therefore, corrections must be applied for any significant deformation) Tj T* -0 Tc -0.0025 Tw (in the apparatus itself. For tests using comparatively incompressible) Tj T* -0 Tc -0.0029 Tw (soils, such as highly preconsolidated clays or dense sands, an appreci-) Tj T* -0.0008 Tc -0.0021 Tw (able amount of the total measured deformation may be in the apparatus) Tj T* 0 Tc -0.0029 Tw (and porous disks. Therefore, a calibration curve should be prepared) Tj T* 0 Tc -0.003 Tw (for each consolidometer when testing such soils. This is done by plac-) Tj T* -0 Tc -0.0027 Tw (ing the consolidometer with submerged porous stones separated by two) Tj T* -0 Tc -0.0026 Tw (filter papers in the loading device, applying the load in increments as in) Tj T* -0 Tc -0.0024 Tw (the test, and reading the dial indicator for each load. The loads are) Tj T* -0 Tc -0.0028 Tw (then decreased as in the rebound portion of the testing, and dial indi-) Tj T* 0 Tc -0.0032 Tw (cator readings are again recorded \(Table 4\). This procedure is re-) Tj T* -0 Tc -0.0023 Tw (peated until the deformation becomes essentially constant \(about) Tj T* -0 Tc -0.0022 Tw (0.0005 in change between cycles\). The total change in dial reading for) Tj T* -0 Tc -0.0028 Tw (each load is the correction to be applied to the dial reading during the) Tj T* -0 Tc -0.0023 Tw (consolidation test under that same load. Usually, about three cycles) Tj T* 0 Tc -0.0033 Tw (are sufficient for the calibration. This procedure should be accom-) Tj T* -0 Tc -0.0028 Tw (plished before each test where equipment deformation would be detri-) Tj T* -0 Tc -0.0022 Tw (mental to the test results. However, if it is established that the cali-) Tj T* -0 Tc -0.0026 Tw (bration is the same for an apparatus time after time, the frequency of) Tj T* -0.0009 Tc -0.002 Tw (calibration may be reduced to a semiannual or annual basis. During) Tj T* -0 Tc -0.0026 Tw (the calibration for deformation of consolidation equipment, a dummy) Tj T* -0 Tc -0.0022 Tw (specimen such as a metal disk of known compressibility is sometimes) Tj T* -0 Tc -0.0027 Tw (used to eliminate the need for adjustments to the lever arm system.) Tj T* -0 Tc -0.0024 Tw (Note that these determinations of equipment deformation do not take into) Tj T* 0 Tc -0.003 Tw (account deformations resulting from the seating of a soil specimen) Tj T* -0 Tc -0.0022 Tw (agaist the top and bottom porous stones, which in some cases may be) Tj T* -0 Tc 0 Tw (significant.) Tj ET endstream endobj 137 0 obj <>/Filter/CCITTFaxDecode/Height 206/Length 731/Name/im21/Subtype/Image/Type/XObject/Width 648>>stream &JheF@2[Ko_o['ս&NA#ս%WO ^SxoIVoVm/ aq _뿮ͺ/+OK7C MH7 Ⱥ!v \r 2 y!2=SM& P4o V~ӆ5 |?0 ``}dr^@5J @F롦Ӑ< >֤ H x83\W4t"!;3*_9 qʲ?Ua>_8n u Q?_K@:wd{OAxD0l?[! pA< 4PE@m2鶘M5 Ab i~Y_:[v  9CWE|4 ZN:^UK_ {%I}Apf-ZJ}wD]A80Az鶽tvoK|!5|a7#i]߿[~}[iw^[imnvc\, endstream endobj 138 0 obj <>/ProcSet 140 0 R>>/Rotate 0/Type/Page>> endobj 139 0 obj <>stream 0 0 0 rg 86.4 675.36 449.28 1.2 re f 86.4 442.8 449.28 1.2 re f BT 426.96 743.52 TD /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -170.64 -689.28 TD -0.0058 Tc 0 Tw (33) Tj -141.84 664.08 TD -0.0009 Tc -0.002 Tw (Table 4. Deformation of Consolidation Equipment) Tj 117.12 -41.04 TD -0 Tc -0.0026 Tw (Deformation of Apparatus, in.) Tj ET 216 660.48 315.12 0.72 re f BT 99.12 648.24 TD -0.0023 Tc 0 Tw (Load) Tj 116.88 0 TD -0 Tc (First) Tj 144 0 TD 0 Tc (Second) Tj 126 0 TD 0 Tc (Third) Tj -399.6 -13.68 TD -0 Tc -0.0021 Tw (tons/sq ft) Tj ET 86.4 633.12 55.2 0.72 re f BT 216 634.56 TD 0.0013 Tc 0 Tw (Cycle) Tj ET 216 633.12 32.64 0.72 re f BT 360 634.56 TD -0.0042 Tw ( Cycle ) Tj ET 360 633.12 39.84 0.72 re f BT 486 634.56 TD 0 Tw (Cycle) Tj ET 486 633.12 32.64 0.72 re f BT 100.8 607.2 TD -0.0052 Tc (0.015) Tj 115.2 0 TD (0.000) Tj 144 0 TD (0.000) Tj 126 0 TD (0.000) Tj -385.2 -13.68 TD -0.005 Tc (0.25) Tj 115.2 0 TD -0.0053 Tc (0.0025) Tj 144 0 TD (0.0020) Tj 126 0 TD (0.0019) Tj -385.2 -13.68 TD -0.005 Tc (0.50) Tj 115.2 0 TD -0.0053 Tc (0.0041) Tj 144 0 TD (0.0033) Tj 126 0 TD (0.0031) Tj -385.2 -13.68 TD -0.0048 Tc (1.0) Tj 115.2 0 TD -0.0053 Tc (0.0060) Tj 144 0 TD (0.0049) Tj 126 0 TD (0.0048) Tj -385.2 -13.68 TD -0.0048 Tc (2.0) Tj 115.2 0 TD -0.0053 Tc (0.0079) Tj 144 0 TD (0.0065) Tj 126 0 TD (0.0062) Tj -385.2 -13.68 TD -0.0048 Tc (4.0) Tj 115.2 0 TD -0.0053 Tc (0.0095) Tj 144 0 TD (0.0079) Tj 126 0 TD (0.0075) Tj -385.2 -13.68 TD -0.0048 Tc (8.0) Tj 115.2 0 TD -0.0053 Tc (0.0116) Tj 144 0 TD (0.0095) Tj 126 0 TD (0.0090) Tj -392.4 -13.68 TD -0.005 Tc (16.0) Tj 122.4 0 TD -0.0053 Tc (0.0148) Tj 144 0 TD (0.0119) Tj 126 0 TD (0.0112) Tj -399.6 -13.68 TD 0 Tc (Rebound) Tj 14.4 -13.68 TD -0.0048 Tc (4.0) Tj 115.2 0 TD -0.0053 Tc (0.0118) Tj 144 0 TD (0.0088) Tj 126 0 TD (0.0082) Tj -385.2 -13.68 TD -0.0048 Tc (1.0) Tj 115.2 0 TD -0.0053 Tc (0.0091) Tj 144 0 TD (0.0064) Tj 126 0 TD (0.0057) Tj -385.2 -13.68 TD -0.0052 Tc (0.015) Tj 115.2 0 TD -0.0053 Tc (0.0032) Tj 144 0 TD (0.0009) Tj 126 0 TD (0.0001) Tj -381.6 -41.04 TD -0.0014 Tc (e.) Tj 18 0 TD -0.0009 Tc -0.002 Tw (Piston Friction in Triaxial Equipment.) Tj ET 122.4 414.24 230.88 0.72 re f BT 353.28 415.68 TD -0 Tc -0.0023 Tw ( In most triaxial equip-) Tj -266.88 -13.68 TD -0.0009 Tc -0.0019 Tw (ment in use today, the axial load is applied to the soil specimen by) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (means of a piston passing through the top of the chamber with the ap-) Tj T* -0 Tc -0.0026 Tw (plied load being measured outside the chamber. Thus any friction be-) Tj T* -0 Tc -0.0025 Tw (tween the piston and the bushing in the chamber will increase the ap-) Tj T* 0 Tc -0.0032 Tw (parent load on the soil specimen. Proper design and construction of) Tj T* -0 Tc -0.0023 Tw (the equipment will eliminate friction to a large extent, but where) Tj T* 0 Tc -0.0032 Tw (lateral forces on the piston are created by nonuniform deformation of) Tj T* -0 Tc -0.0029 Tw (the soil specimen, the piston friction from this cause cannot be avoided.) Tj T* 0 Tc -0.0031 Tw (The friction due to lateral forces on the piston may be reduced greatly) Tj T* 0 Tc -0.003 Tw (by proper lubrication and rotation of the piston or bushing or the use) Tj T* -0 Tc -0.0023 Tw (of linear ball bushings. Tests by Haussler and also by Warlam \(ref-) Tj T* -0 Tc -0.0028 Tw (erence 11\) indicate that in a well-designed chamber, the friction should) Tj T* -0 Tc -0.0025 Tw (not exceed about 1. to 3 percent of the axial load. Quoting from Bishop) Tj T* -0 Tc -0.0027 Tw (and Henkel \(reference 4, page 175\): "For most commercial testing) Tj T* -0 Tc -0.0027 Tw (and also for a good deal of research work, the simplicity of the appa-) Tj T* -0 Tc -0.0029 Tw (ratus is more important than the elimination of errors of the magni-) Tj T* 0 Tc -0.003 Tw (tudes mentioned above." To determine the effect of lateral force on) Tj T* -0 Tc -0.0023 Tw (piston friction, the triaxial piston and bushing are assembled and held) Tj T* -0 Tc -0.0022 Tw (fixed with the piston vertical as it would be during a test. A lateral) Tj T* 0 Tc -0.003 Tw (force is then applied to the piston by means of a cord looped over the) Tj T* -0 Tc -0.0027 Tw (bottom end of the piston. The distance of the cord below the bushing) Tj T* -0 Tc -0.0024 Tw (should be approximately the length of piston below the bushing when) Tj T* -0 Tc -0.0027 Tw (the chamber is assembled for testing. The cord is run over a ball-) Tj T* -0 Tc -0.0024 Tw (bearing V-pulley and down to a hanger with deadweights used to apply) Tj ET endstream endobj 140 0 obj [/PDF/Text] endobj 141 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 142 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 217.44 -689.28 TD -0.0058 Tc 0 Tw (34) Tj -217.44 664.08 TD 0 Tc -0.0031 Tw (the load. The force required to move the piston is measured for each) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (of several lateral forces. Since in any triaxial test the magnitude of) Tj T* -0 Tc -0.0022 Tw (any lateral force developing against the piston is an unknown quantity,) Tj T* 0 Tc -0.0036 Tw (no correction can be made for this effect. However, the results of the) Tj T* -0 Tc -0.0029 Tw (above-described procedure should indicate only a small change in) Tj T* -0.0008 Tc -0.0021 Tw (piston load with a lateral force applied against the piston. The piston) Tj T* 0 Tc -0.0029 Tw (friction introduced by the use of an O-ring seal is usually a constant) Tj T* -0 Tc -0.0023 Tw (value and may be subtracted from the measured axial load. Excellent) Tj T* 0 Tc -0.0031 Tw (discussions of piston friction are given in reference 14 \(page 865\) and) Tj T* -0 Tc -0.0027 Tw (reference 10 \(page 961\).) Tj 18 -27.36 TD 0 Tc 0 Tw (f.) Tj 18 0 TD 0 Tc -0.003 Tw (Determination of Extension Modulus of Rubber Membrane.) Tj ET 122.4 551.04 355.92 0.72 re f BT 104.4 525.12 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0028 Tw (In the triaxial compression test, the soil specimen is inclosed in) Tj -45.12 -13.68 TD -0 Tc -0.0026 Tw (a rubber membrane. As the sample is deformed either by bulging or) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (shearing, the membrane tends to restrain this deformation, thus in-) Tj T* -0 Tc -0.0023 Tw (creasing the axial load. For most soils tested using membranes of) Tj T* 0 Tc -0.0029 Tw (standard thickness, the correction is insignificant and can be ignored.) Tj T* -0 Tc -0.0026 Tw (In special testing programs, it may be desirable to apply a correction) Tj T* 0 Tc -0.0029 Tw (for membrane restraint.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0023 Tw (There have been several investigations of this problem. The) Tj -45.12 -13.68 TD -0 Tc -0.0028 Tw (earlier works by Henkel and Gilbert \(reference 6\), and Bishop and) Tj 0 -13.68 TD 0 Tc -0.0034 Tw (Henkel \(reference 4, page 56\), provided a correction only for the Q) Tj T* 0 Tc -0.0033 Tw (triaxial test. A more recent report by Duncan and Seed \(reference 5\),) Tj T* 0 Tc -0.0029 Tw (provides for membrane corrections for Q, R, and S triaxial tests.) Tj T* 0 Tc -0.003 Tw (Membrane, drain, and area corrections are reported by LaRochelle in) Tj T* 0.0013 Tc -0.0042 Tw (reference 8.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(3\)) Tj 27.12 0 TD 0 Tc -0.0035 Tw (To compute the correction for membrane restraint, the com-) Tj -45.12 -13.68 TD -0 Tc -0.0026 Tw (pression modulus of the rubber membrane must be known. Since this) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (would be difficult to measure on thin membranes, it is assumed that) Tj T* -0 Tc -0.0027 Tw (the extension modulus is equal to the compression modulus. The ex-) Tj T* -0 Tc -0.0025 Tw (tension modulus is determined by measuring the strain caused by a) Tj T* -0 Tc -0.0024 Tw (corresponding weight as shown in Fig. 22. Talcum powder may be used) Tj T* 0 Tc -0.003 Tw (on the glass tubes to decrease the friction of the rubber. The change in) Tj T* -0 Tc -0.0027 Tw (length of the rubber membrane due to the weight w is most conveniently) Tj T* -0 Tc -0.0026 Tw (measured using a cathetometer.) Tj 18 -27.36 TD -0.0012 Tc 0 Tw (g.) Tj 18 0 TD -0.0012 Tc -0.0017 Tw (Calibration of Liquid Limit Device.) Tj ET 122.4 168 209.76 0.72 re f BT 332.16 169.44 TD -0.0014 Tc -0.0015 Tw ( Details of the liquid limit) Tj -245.76 -13.68 TD -0 Tc -0.0023 Tw (device, with dimensions, etc., are presented in EM 1110-2-1906, Ap-) Tj 0 -13.68 TD 0 Tc -0.003 Tw (pendix III. Each liquid limit device and grooving tool should be checked) Tj T* 0 Tc -0.0029 Tw (upon arrival in the laboratory for compliance with specifications since) Tj T* 0 Tc -0.003 Tw (many do not comply. Thereafter, periodic checks should be made of) Tj T* -0 Tc -0.0027 Tw (those adjustments and dimensions that are changed through wear. The) Tj T* 0.0008 Tc -0.0037 Tw (frequency of checking depends upon the use.) Tj ET endstream endobj 143 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 144 0 obj [145 0 R 146 0 R] endobj 145 0 obj <>stream q 316.56 0 0 435.6 152.88 277.68 cm /im22 Do endstream endobj 146 0 obj <>stream Q BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -170.64 -689.28 TD -0.0058 Tc 0 Tw (35) Tj -189.36 212.64 TD -0 Tc -0.0023 Tw (Fig. 22. Determination of extension modulus of rubber membrane) Tj -10.08 -27.36 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0024 Tw (Initial Checks.) Tj ET 131.52 222.72 88.08 0.72 re f BT 104.4 196.8 TD 0.001 Tc 0 Tw (\(a\)) Tj 27.12 0 TD -0 Tc -0.0023 Tw (The hardness of the base of the liquid limit device has been) Tj -45.12 -13.68 TD 0 Tc -0.0033 Tw (found to have an effect on the results obtained. It is therefore necessary) Tj 0 -13.68 TD 0 Tc -0.0032 Tw (to check the hardness of new devices and recheck old devices that have) Tj T* -0 Tc -0.0029 Tw (been in service one year. To test the hardness, measure the height of) Tj T* -0.0009 Tc -0.002 Tw (rebound of a steel ball bearing, 5/16 in. in diameter, when dropped) Tj ET endstream endobj 147 0 obj <>/Filter/CCITTFaxDecode/Height 1815/Length 6783/Name/im22/Subtype/Image/Type/XObject/Width 1319>>stream &R  @@ (~O{^_ߚr]4QO^A~_I7zMzMW>Mޕ޿M?W?Mޗ7߷ޓzM^z/V l>Mz?ޓ}7޷z>}>z߿zzMM~߿OzM}7zWޓzM~ޓޭ}7_M7oJ[~[oIoW cI_oҿIIVooo}/ջO@k7??MWZOZOonooԆK‡O!ɹC蕃D,¨r Ȝ< mimi$}W"\3` C!2lCd@4d|k5qDl `hIasDE4Oj!?z6w6[D%wVS? _Uk !24r!9!f P0/D(id) iӰ+_z_%M5P&L gfl#@&B[ d#@N / /U ?\-9Z33հa0T{xa@xo?CaET 08:3 i[otDt\,a{'D5PW<+X]oí wivoMPpΡ_hZ C>4?WႯ[a9C;oC* l!#ik-p!7 'xzrxw w=6_m|^[<4XO@#% qv7d1,"Nq~?yKQ|CW;_G@PGkIoȻ#r !2e$,/~N~oJ﷿}@nv_w޷/ _k$$[D!%A?A\ߠ"D&tAo W uAߠT~K wo Ap +h"l4Re*/@~J?t޿ߦՆ4g a_am/ïai߰_aI- I-to[na-?nKK44wK /]n_ ['u ]}a~m-}wk߿_oK/K5uAiY5nC*A%-!(2 PԂR6J?  BG઩ [^ޥA_[UґGݧn?ᦚCE4XO@C 2pdMeti}+߫m/jۦ5.@/گ}v]^kX}_ե_kկakۭ'm&0aoՃ09 " aH &Kф^4 aXl#m_-tP}Rf* a! tD|.!i2. K 28dE޾o/[t_m/uۯnn_K_nJ_ku_~}@~/kk ">}_/tۿ]Vu_@7 jo:IwD 3 .a +A_B jD5` ba`! dH Q j]0iMBaTYxA"A AnuӴ4Ca5%[_T^~Ns{E }BTG ߼ … G?< < !܉E>A~x2xMA놻;xǠkwk֪Zc?_ݩ:]6SJ hտ枚p u!"Cp[ ?۞ xߏUHn/imu=X{ov.?D%NuiMUm}T MSA5E_hZvv0D69|B!CgӇ """ d L!C^ Hr Qg 0#2 !d2@r*?jD2!/YAq23OL&A%A!hCCiv42 -<|2N~ꪩA|_^M{`j-y9gg )hA^՞4 fQY1u`L[~;|;iz]G^z~}c_uj?^< 8 IYC 5S|G< g3O8>Ažp@_O a!2@lr<&@Ռ͐@8}454L<d Bd@! 0 ABOOUAS0N( 5Owz1I뮝_PL'*wzZu5i5 ᦃ;٬}ZjN=uײ+PM%NjfVH}n 8R /kz3P><Ρ_y@JC=azw> @_Վ }U - `{htCݯkƟk=1}BoqՅ3TZu7֟?sN]W0 pt]?_cS4}&O_] ӞA^>)y iߠ*rc<.ҟ3p . _@DXZ'mwѰou޻Gwq\4%W'?It]M;G=5Ѭ~vOA믮ޟ{O]aSik魭kEEz5i_v 0!ЋgM4 !58q " bqɎӎ;AS5"X6`VM>E.~kߪUv ! P4L֤2ӂݨLTȚrzN a2$ ȃv4 x=U2 =^[Uܢ|޿631;Otp|oFa4=;}ꨂ 8.E _pW kõ8`Tkd* > ΨC= կ 8 np}3#ToׅT!B|> т BiްЈ3y`9@845x]{SK\.]ih< }k lg M,H B~ YM01 2%D2־L'jLd< zjvõ?jWf?4ka?O0`! ӭaBg-;O[al 5|1᭪43_aP﾿Uzi޿dT?x|uüˁqSA5!(Sts0P>p~z~mS x5P Cːr~~6)Gk5iZP"w"[kby"u~;k xT=kMUf0߭ݬG}馚j޶h;M M B0i Vaaa0@8a"" P2"m W q =;MHbL!c?~f Z}$zk^׽~=_'o0z&~xoקjӴXahE,!  endstream endobj 148 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 149 0 obj <>stream BT 86.4 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 217.44 -689.28 TD -0.0058 Tc 0 Tw (36) Tj -217.44 664.08 TD -0 Tc -0.0024 Tw (from a height of 10 in. To have an acceptable hardness, the rebound) Tj 0 -13.68 TD -0.001 Tc -0.0019 Tw (should be not less than 7.3 in. or more than 9.0 in. Use a plastic or) Tj T* -0.0014 Tc -0.0014 Tw (glass tube 10 in. long with marks at the 7.3- and 9.0-in. heights. These) Tj T* -0 Tc -0.0026 Tw (marks are easily applied to the tube by using a piece of pres sure-) Tj T* -0 Tc -0.0022 Tw (sensitive plastic mending tape on which a line has been drawn. The) Tj T* -0 Tc -0.0024 Tw (tube should be of sufficient diameter so that the steel ball falls freely;) Tj T* -0.0008 Tc -0.002 Tw (an inside diameter of approximately 0.5 in. is satisfactory. Several) Tj T* -0 Tc -0.0027 Tw (trials should be made near but not exactly on the spot of contact of the) Tj T* 0.0013 Tc 0 Tw (cup.) Tj 18 -27.36 TD 0.001 Tc (\(b\)) Tj 27.12 0 TD 0 Tc -0.0036 Tw (A motor-driven device should be checked for excessive vibra-) Tj -45.12 -13.68 TD -0.0011 Tc -0.0017 Tw (tion by placing a 250-ml beaker half full of water on the base. No) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (more than a barely perceptible ripple should be observed. The cup) Tj T* 0 Tc -0.0036 Tw (and cam follower assembly should weigh 175 \261 15 g. There are) Tj T* 0 Tc -0.0029 Tw (several methods for measuring the grooving tool. The optical reticle) Tj T* -0 Tc -0.0023 Tw (used with a pocket magnifier, as described in paragraph 5c, is probably) Tj T* -0 Tc -0.0024 Tw (the least expensive. The Kansas City District describes a method used) Tj T* -0 Tc -0.0025 Tw (in their laboratory as follows: "The grooving tool is inserted, sharp) Tj T* -0 Tc -0.0023 Tw (edge up, in a Remington Rand Model G, Catalog No. F72 Film-a-Record) Tj T* -0 Tc -0.0023 Tw (Reader, in the place where the film would normally be. The image is) Tj T* -0 Tc -0.0023 Tw (magnified approximately 43 times and projected as a silhouette on the) Tj T* 0 Tc -0.0031 Tw (ground glass screen from which the exact size and shape are easily) Tj T* -0 Tc -0.0025 Tw (obtained. True magnification must be determined before blown-up) Tj T* -0 Tc -0.0025 Tw (measurements can be used. True magnification can be determined by) Tj T* -0 Tc -0.0027 Tw (inserting a millimeter scale in place of the film and checking the mag-) Tj T* 0 Tc -0.0029 Tw (nified image on the screen. With this blown-up image, any imperfec-) Tj T* 0 Tc -0.0032 Tw (tions are readily observed." An overhead transparency projector may) Tj T* -0.0008 Tc -0.0021 Tw (be similarly used, but has the disadvantage of requiring a darkened) Tj T* 0 Tc -0.0036 Tw (room and a projection screen.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD 0 Tc -0.0036 Tw (In-Use Checks.) Tj ET 131.52 291.12 90.96 0.72 re f BT 104.4 265.2 TD 0.001 Tc 0 Tw (\(a\)) Tj 27.12 0 TD -0 Tc -0.0027 Tw (Once a device has been placed in use, the height of fall of the) Tj -45.12 -13.68 TD 0 Tc -0.003 Tw (cup should be checked frequently. By means of the height gage, the) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (height of fall must be adjusted so that the shiny contact spot \(not the) Tj T* -0 Tc -0.0024 Tw (lowest point of the cup\) is 10.0 mm above the base. After the adjust-) Tj T* 0 Tc -0.003 Tw (ing screws are tightened, the height should be rechecked. A flashlight) Tj T* -0 Tc -0.0022 Tw (is helpful in making this adjustment.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(b\)) Tj 27.12 0 TD -0 Tc -0.0021 Tw (An alternative method is to attach 1-in. length of black plastic) Tj -45.12 -13.68 TD -0 Tc -0.0027 Tw (electrician\222s tape to the bottom of the limit cup such that the near edge) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (of the tape bisects the area of contact and is parallel to the center line) Tj T* 0 Tc -0.0029 Tw (of the pin in the cam follower. The cup is placed in the device, and the) Tj T* 0 Tc -0.003 Tw (height gage is moved back under the cup until it just touches the edge of) Tj T* -0 Tc -0.0028 Tw (the electrician\222s tape. The crank is then turned at the specified speed;) Tj T* 0 Tc -0.0032 Tw (only a faint click should be produced if the height adjustment is correct.) Tj ET endstream endobj 150 0 obj <>/ProcSet 168 0 R>>/Rotate 0/Type/Page>> endobj 151 0 obj <>stream BT 426.96 743.52 TD 0 0 0 rg /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -170.64 -689.28 TD -0.0058 Tc 0 Tw (37) Tj -217.44 664.08 TD 0.0008 Tc -0.0037 Tw (After the correct drop is secured, the adjusting screws are tightened,) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (a final check on drop made, and the tape is then removed.) Tj 18 -27.36 TD 0.0048 Tc 0 Tw (\(c\)) Tj 18 0 TD 0 Tc -0.003 Tw (When the cup and base become so worn that the flat point of con-) Tj -36 -13.68 TD -0 Tc -0.0025 Tw (tact exceeds 3/8 in. in diameter, or when a groove that is worn inside) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (the cup can be felt distinctly by hand, the worn item should be replaced) Tj T* 0 Tc -0.0032 Tw (or repaired. A worn cup can be remedied by moving the cam follower) Tj T* -0 Tc -0.0023 Tw (90 deg to obtain a new point of impact. The pin on which the cam fol-) Tj T* -0 Tc -0.0025 Tw (lower pivots should not be worn sufficiently to permit 1/8 in. side play) Tj T* 0.0011 Tc -0.0039 Tw (of the cup.) Tj 18 -27.36 TD -0 Tc 0 Tw (h.) Tj 18 0 TD -0 Tc -0.0023 Tw (Amplitude of Vibration of Vibratory Table.) Tj ET 122.4 551.04 255.12 0.72 re f BT 104.4 525.12 TD 0.001 Tc 0 Tw (\(1\)) Tj 27.12 0 TD -0 Tc -0.0023 Tw (The amplitude of vibration has been found to have a significant) Tj -45.12 -13.68 TD -0 Tc -0.0024 Tw (effect on the maximum density obtained as a part of the relative density) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (test. For this reason, it is desirable to measure the amplitude of each) Tj T* -0 Tc -0.0026 Tw (new piece of equipment or of equipment that has had the adjustments on) Tj T* 0 Tc -0.0029 Tw (the vibrator changed. Satisfactory measuring devices having the re-) Tj T* 0 Tc -0.0035 Tw (quired speed of response are electronic, such as oscillographs or oscil-) Tj T* -0 Tc -0.0028 Tw (loscopes, together with a suitable sensing device. The accelerometer-) Tj T* -0 Tc -0.0028 Tw (type devices are not satisfactory for use as a sensing element because) Tj T* -0 Tc -0.0026 Tw (the displacement-time curve is not sinusoidal, and also there are) Tj T* -0 Tc -0.0027 Tw (several harmonic frequencies present in the vibration that make the) Tj T* 0 Tc -0.0031 Tw (computation of displacement from the acceleration very difficult. The) Tj T* -0 Tc -0.0023 Tw (most satisfactory apparatus is an oscillograph, with a differential) Tj T* -0 Tc -0.0026 Tw (transformer as the sensing unit, with a suitable power supply. Com-) Tj T* -0 Tc -0.0021 Tw (ponents that have been found to be suitable are a CEC 124 oscillograph) Tj T* -0 Tc -0.0029 Tw (as the recorder with a Collins differential transformer of 0.050-in.) Tj T* -0 Tc -0.0023 Tw (capacity and a CEC Model 3140 power supply.) Tj 18 -27.36 TD 0.001 Tc 0 Tw (\(2\)) Tj 27.12 0 TD -0 Tc -0.0029 Tw (To calibrate the system, the deflection of the trace on the oscil-) Tj -45.12 -13.68 TD -0 Tc -0.0029 Tw (lograph is adjusted so that the desired deflection is secured with a) Tj 0 -13.68 TD -0 Tc -0.0028 Tw (measured movement of the core of the Collins gage. For initial cali-) Tj T* -0 Tc -0.0026 Tw (bration, the movement of the core is measured either with gage blocks) Tj T* -0 Tc -0.0024 Tw (or a vernier caliper. A mold is filled with soil and assembled with the) Tj T* -0 Tc -0.0023 Tw (surcharge and attached to the table. The Collins gage is mounted as) Tj T* -0 Tc -0.0023 Tw (close to the mold as possible, with the core attached firmly to the table.) Tj T* -0 Tc -0.0028 Tw (The mount for the gage body should be constructed so that no vibration) Tj T* -0 Tc -0.0027 Tw (from the table reaches the gage. The vibrator is then operated for two) Tj T* -0 Tc -0.0025 Tw (or three minutes, and a record is taken. The amplitude of vibration is) Tj T* 0 Tc -0.0036 Tw (then determined from the trace on the oscillograph record.) Tj 0 -27.36 TD -0.0048 Tc 0.0019 Tw (12. ) Tj 25.2 0 TD -0 Tc -0.0026 Tw (Recommended Calibration Schedule.) Tj ET 111.6 126.96 220.32 0.72 re f BT 331.92 128.4 TD -0.0009 Tc -0.0019 Tw ( Table 5 gives general guid-) Tj -245.52 -13.68 TD 0 Tc -0.0032 Tw (ance on the frequency of calibration of the more common items of) Tj 0 -13.68 TD -0 Tc -0.0025 Tw (laboratory equipment. Items that are used only infrequently do not) Tj T* -0 Tc -0.0026 Tw (need checking as often as the schedule presented in Table 5 indicates,) Tj ET endstream endobj 152 0 obj <>/ProcSet 154 0 R>>/Rotate 0/Type/Page>> endobj 153 0 obj <>stream 0 0 0 rg 86.4 689.04 449.28 1.2 re f 86.4 251.28 449.28 1.2 re f BT 86.4 743.52 TD /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 0 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj 217.44 -689.28 TD -0.0058 Tc 0 Tw (38) Tj -106.56 664.08 TD -0.0018 Tc -0.001 Tw (Table 5. Calibration and Examination) Tj -75.84 -27.36 TD 0 Tc 0 Tw (Item) Tj ET 86.4 674.16 111.6 0.72 re f BT 279.12 675.6 TD -0 Tc (Feature) Tj ET 243.12 674.16 134.88 0.72 re f BT 432 675.6 TD 0 Tc (Frequency) Tj ET 414 674.16 117.12 0.72 re f BT 86.4 648.24 TD -0 Tc -0.0027 Tw (Consolidation rings) Tj 156.72 0 TD -0 Tc -0.0028 Tw (Weight and volume) Tj 170.88 0 TD -0.0017 Tc 0 Tw (Semiannually) Tj -327.6 -13.68 TD 0 Tc -0.0034 Tw (Direct shear specimen) Tj 0 -13.68 TD 0.0014 Tc -0.0043 Tw ( cutters) Tj 156.72 0 TD -0 Tc -0.0028 Tw (Weight and volume) Tj 170.88 0 TD -0.0017 Tc 0 Tw (Semiannually) Tj -327.6 -13.68 TD -0 Tc -0.0027 Tw (Compaction molds) Tj 156.72 0 TD 0 Tc 0 Tw (Volume) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD -0.001 Tc -0.0019 Tw (Load rings, load) Tj 0 -13.68 TD 0 Tc -0.0033 Tw ( frames) Tj 156.72 0 TD 0 Tc 0 Tw (Load-deflection) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD 0 Tc -0.0035 Tw (Bourdon gages) Tj 156.72 0 TD 0.001 Tc 0 Tw (Pressure) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD -0 Tc -0.0026 Tw (Specific gravity flasks) Tj 156.72 0 TD 0 Tc 0 Tw (Weight) Tj 170.88 0 TD 0.0011 Tc (Once) Tj -327.6 -13.68 TD -0 Tc (Balances) Tj 219.6 0 TD 0.0043 Tc (--) Tj 108 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD 0.0013 Tc (Hydrometers) Tj 219.6 0 TD 0.0043 Tc (--) Tj 108 0 TD 0.0011 Tc (Once) Tj -327.6 -13.68 TD -0 Tc -0.0022 Tw (Balance weights) Tj 219.6 0 TD 0.0043 Tc 0 Tw (--) Tj 108 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD -0 Tc -0.0023 Tw (Sample containers) Tj 0 -13.68 TD 0.0008 Tc -0.0036 Tw ( for water content) Tj 156.72 0 TD 0 Tc 0 Tw (Weight) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD -0 Tc (Oven) Tj 156.72 0 TD 0 Tc -0.0033 Tw (Uniformity of temperature) Tj 170.88 0 TD -0 Tc 0 Tw (Annually) Tj -327.6 -13.68 TD -0 Tc -0.0029 Tw (Compaction rammers:) Tj 12.72 -13.68 TD 0 Tc 0 Tw (Hand) Tj 144 0 TD -0 Tc -0.0025 Tw (Weight, fall, foot diameter) Tj 170.88 0 TD -0 Tc 0 Tw (Annually) Tj -314.88 -13.68 TD -0 Tc (Automatic) Tj 144 0 TD -0 Tc -0.0025 Tw (Comparison with hand) Tj 170.88 0 TD -0 Tc 0 Tw (Annually) Tj -134.88 -13.68 TD 0 Tc (rammer) Tj -192.72 -13.68 TD -0.0011 Tc -0.0017 Tw (Liquid limit device:) Tj 12.72 -13.68 TD -0.0008 Tc 0 Tw (Base) Tj 144 0 TD 0 Tc (Hardness) Tj 170.88 0 TD -0 Tc (Annually) Tj -314.88 -13.68 TD -0.0008 Tc (Base) Tj 144 0 TD 0.0016 Tc (Wear) Tj 170.88 0 TD 0.0008 Tc (Monthly) Tj -314.88 -13.68 TD 0.0018 Tc (Cup) Tj 144 0 TD 0.0016 Tc (Wear) Tj 170.88 0 TD 0.0008 Tc (Monthly) Tj -314.88 -13.68 TD 0.0018 Tc (Cup) Tj 144 0 TD 0 Tc -0.0029 Tw (Height of fall) Tj 170.88 0 TD -0.0026 Tc 0 Tw (Daily) Tj -327.6 -13.68 TD -0.001 Tc -0.0018 Tw (Liquid limit device) Tj 0 -13.68 TD 0 Tc -0.0031 Tw ( grooving tool) Tj 156.72 0 TD 0.0016 Tc 0 Tw (Wear) Tj 170.88 0 TD -0 Tc (Weekly) Tj -327.6 -13.68 TD 0.0012 Tc -0.0041 Tw (Electric clocks) Tj 156.72 0 TD 0.0016 Tc 0 Tw (Wear) Tj 170.88 0 TD 0 Tc -0.0033 Tw (Every two years) Tj -327.6 -13.68 TD -0.0008 Tc 0 Tw (Stopwatches) Tj 156.72 0 TD 0.0016 Tc (Wear) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD -0 Tc -0.0027 Tw (Lever system knife) Tj 156.72 0 TD 0.0016 Tc 0 Tw (Wear) Tj 170.88 0 TD -0 Tc (Annually) Tj -327.6 -13.68 TD 0 Tc -0.0031 Tw ( edges) Tj 0 -41.04 TD -0 Tc -0.0024 Tw (while items in constant use, especially those subject to wear, may need) Tj 0 -13.68 TD -0 Tc -0.0026 Tw (to be checked more frequently than indicated. Also, if any item has) Tj T* -0 Tc -0.0027 Tw (been subjected to unusual treatment, it should be recalibrated; for ex-) Tj T* -0 Tc -0.0021 Tw (ample, a load ring that has been overloaded, dropped, or disassembled) Tj T* -0 Tc -0.0023 Tw (should be recalibrated.) Tj 0 -27.36 TD -0.0048 Tc 0.0019 Tw (13. ) Tj 25.2 0 TD -0.0008 Tc -0.0021 Tw (Permissible Tolerances.) Tj ET 111.6 140.64 142.32 0.72 re f BT 253.92 142.08 TD -0.0008 Tc -0.0021 Tw ( To establish the permissible tolerance in) Tj -167.52 -13.68 TD 0 Tc -0.0031 Tw (a measurement of testing equipment, the required accuracy of test re-) Tj 0 -13.68 TD -0 Tc -0.0023 Tw (sults should be established. For example, the volume of a consolidom-) Tj T* 0 Tc -0.0032 Tw (eter ring must be determined with greater accuracy than the volume of) Tj T* -0 Tc -0.0024 Tw (a compaction mold. Table 6 is a guide to be used for items for which) Tj ET endstream endobj 154 0 obj [/PDF/Text] endobj 155 0 obj <>/ProcSet 168 0 R/XObject<>>>/Rotate 0/Type/Page>> endobj 156 0 obj [157 0 R 158 0 R 159 0 R] endobj 157 0 obj <>stream 0 0 0 rg 86.4 620.64 449.28 1.2 re f 86.4 251.28 449.28 1.2 re f q 160.32 0 0 34.8 308.88 141.6 cm /im23 Do endstream endobj 158 0 obj <>stream Q q 139.92 0 0 28.56 262.08 209.76 cm /im24 Do endstream endobj 159 0 obj <>stream Q BT 426.96 743.52 TD /F0 12.96 Tf -0.0027 Tc -0 Tw (EM 1110-2-1909) Tj 47.52 -15.36 TD -0.0024 Tc -0 Tw (1 Dec 70) Tj -170.64 -689.28 TD -0.0058 Tc 0 Tw (39) Tj -217.44 664.08 TD -0 Tc -0.0022 Tw (permissible tolerances are not outlined in EM 1110-2-1906. Precise) Tj 0 -13.68 TD -0 Tc -0.0027 Tw (weighing and measuring devices should be used to determine that the) Tj T* -0.0011 Tc -0.0018 Tw (tolerances in Table 6 are met.) Tj 129.36 -41.04 TD -0.0015 Tc -0.0014 Tw (Table 6. Permissible Tolerances) Tj 198.24 -27.36 TD -0 Tc 0 Tw (Maximum) Tj -283.44 -13.68 TD 0 Tc (Item) Tj ET 86.4 592.08 273.6 0.72 re f BT 378 593.52 TD -0.001 Tc -0.0019 Tw (Allowable Tolerance) Tj ET 378 592.08 121.44 0.72 re f BT 86.4 566.16 TD -0 Tc -0.0022 Tw (Consolidation ring \(4 to 4.5 in. in diameter\):) Tj 12.72 -27.36 TD 0 Tc 0 Tw (Weight) Tj 314.88 0 TD -0.0035 Tc 0 Tw (0.1 g) Tj -314.88 -13.68 TD -0 Tc -0.0027 Tw (Diameter or height) Tj 314.88 0 TD -0.0041 Tc 0.0012 Tw (0.025 mm) Tj -200.4 5.52 TD /F0 7.68 Tf 0.0717 Tc 0 Tw (\(1\)) Tj -127.2 -32.88 TD /F0 12.96 Tf 0 Tc -0.0032 Tw (Direct shear trimming ring:) Tj 12.72 -27.36 TD 0 Tc 0 Tw (Weight) Tj 314.88 0 TD -0.0039 Tc 0.0011 Tw (0.01 g) Tj -314.88 -13.68 TD 0 Tc 0 Tw (Height) Tj 314.88 0 TD -0.0041 Tc 0.0012 Tw (0.025 mm) Tj -314.88 -13.68 TD -0 Tc -0.0028 Tw (Length or width) Tj 314.88 0 TD -0.0041 Tc 0.0012 Tw (0.025 mm) Tj -327.6 -27.36 TD 0 Tc -0.0031 Tw (Volume of compaction molds) Tj 327.6 0 TD -0.0025 Tc 0 Tw (0.5%) Tj -327.6 -27.36 TD -0 Tc -0.0026 Tw (Load rings and frames) Tj 273.6 0 TD -0.0008 Tc -0.0021 Tw (1% of applied load) Tj -273.6 -27.36 TD 0 Tc -0.0035 Tw (Bourdon gages) Tj 273.6 0 TD -0 Tc -0.0024 Tw (0.5% of full scale) Tj 0 -13.68 TD 0.0011 Tc -0.004 Tw ( or range) Tj -273.6 -27.36 TD 0 Tc -0.0031 Tw (Containers for water content test:) Tj 0 -27.36 TD -0 Tc -0.0022 Tw ( For specimens weighing 1 to 50 g) Tj 327.6 0 TD -0.0039 Tc 0.0011 Tw (0.01 g) Tj -327.6 -13.68 TD -0.001 Tc -0.0019 Tw ( For specimens weighing 51 to 500 g) Tj 327.6 0 TD -0.0035 Tc 0 Tw (0.1 g) Tj -327.6 -13.68 TD -0 Tc -0.0025 Tw ( For specimens weighing over 500 g) Tj 327.6 0 TD -0.0035 Tc 0 Tw (1.0 g) Tj -318 -41.04 TD 0 Tc -0.0034 Tw ( Note that volumetric error ) Tj 306.96 0 TD -0 Tc -0.0026 Tw ( and should) Tj -316.56 5.52 TD /F0 7.68 Tf 0.0717 Tc 0 Tw (\(1\)) Tj 0 -19.2 TD /F0 12.96 Tf 0.0094 Tc -0.0122 Tw (be <1%.) 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