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<GEOTECHNICAL_PROJECT>
  <IDENTIFIER>Project Number</IDENTIFIER>
  <NAME>Project Data</NAME>
  <DATE/>
  <GEOTECH_ML_VERSION>1.0</GEOTECH_ML_VERSION>
  <PROJECT_DETAILS>
    <CLIENT>County of Berthoud</CLIENT>
  </PROJECT_DETAILS>
  <SITE_INVESTIGATION>
    <IDENTIFIER/>
    <NAME/>
    <DATE/>
    <DIMENSION_UNITS Units="US"/>
    <GROUND_INVESTIGATION>
      <IDENTIFIER/>
      <NAME/>
      <DATE/>
      <BOREHOLE>
        <IDENTIFIER></IDENTIFIER>
        <HOLE_DETAILS><LOCATION_IN_PROJECT></LOCATION_IN_PROJECT></HOLE_DETAILS>
        <SAMPLES>
          <SAMPLE>
            <TOP></TOP>
            <IDENTIFIER></IDENTIFIER>
            <TYPE/>
            <SAMPLE_DETAILS>
              <DESCRIPTION>151 and Auto and linaer temp correct</DESCRIPTION>
              <DATE></DATE>
            </SAMPLE_DETAILS>
          </SAMPLE>
        </SAMPLES>
        <LABORATORY_TESTS>
          <GS_DATA>
            <SAMPLE_IDENTIFIER></SAMPLE_IDENTIFIER>
            <DEPTH></DEPTH>
            <GSTestSettings>
              <SpecEnvelope name="ASTM C 33 - 3/4&quot; Aggregate"/>
              <SieveSizesList name=""/>
              <MaxDensitySieve>
                <OpeningSize readable_size="1 in." units="IN."/>
              </MaxDensitySieve>
              <ChartOmitsCurve set="no"/>
              <ParticleBreakdown set="Australian Standard AS 1726"/>
              <HydrometerTestSettings>
                <OpeningSize readable_size="#100" units="IN."/>
                <Consts151h a="." b="14"/>
                <Consts152h a="0.164" b="16.294964"/>
                <Using151h set="yes"/>
                <AutoTempCorr corrAt20C=""/>
              </HydrometerTestSettings>
              <SieveTestSettings>
                <Test style="weightretained"/>
              </SieveTestSettings>
            </GSTestSettings>
            <SieveTest>
              <WashTest>
                <SampleWt>
                  <Tare id="" wt=""/>
                </SampleWt>
              </WashTest>
              <Sample>
                <SampleWt>263.57
                  <Tare id="" wt="78.72"/>
                </SampleWt>
              </Sample>
              <TestPoint>
                <Sieve>
                  <SampleWt>100
                    <Tare id="" wt="100"/>
                  </SampleWt>
                  <OpeningSize readable_size="400mm" sizemm="400.000000" units="IN."/>
                  <PercentFiner>100.0000</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 184.8500 / (100.0000 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 184.8500 / 184.8500 * 100 = 100.0000</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>100
                    <Tare id="" wt="90"/>
                  </SampleWt>
                  <OpeningSize readable_size="200mm" sizemm="200.000000" units="IN."/>
                  <PercentFiner>94.5902</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 184.8500 / (100.0000 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 174.8500 / 184.8500 * 100 = 94.5902</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>78.72
                    <Tare id="" wt="60"/>
                  </SampleWt>
                  <OpeningSize readable_size="#4" sizemm="4.750000" units="IN."/>
                  <PercentFiner>84.4631</PercentFiner>
                  <SieveSpecification>
                    <LowerBoundPct>0</LowerBoundPct>
                    <UpperBoundPct>10</UpperBoundPct>
                    <TolerancePct></TolerancePct>
                  </SieveSpecification>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 174.8500 / (94.5902 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 156.1300 / 184.8500 * 100 = 84.4631</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>97.5
                    <Tare id="" wt="78.72"/>
                  </SampleWt>
                  <OpeningSize readable_size="#20" sizemm="0.850000" units="IN."/>
                  <PercentFiner>74.3035</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 156.1300 / (84.4631 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 137.3500 / 184.8500 * 100 = 74.3035</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>87.59
                    <Tare id="" wt="78.72"/>
                  </SampleWt>
                  <OpeningSize readable_size="#40" sizemm="0.425000" units="IN."/>
                  <PercentFiner>69.5050</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 137.3500 / (74.3035 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 128.4800 / 184.8500 * 100 = 69.5050</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>94
                    <Tare id="" wt="78.72"/>
                  </SampleWt>
                  <OpeningSize readable_size="#100" sizemm="0.150000" units="IN."/>
                  <PercentFiner>61.2388</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 128.4800 / (69.5050 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 113.2000 / 184.8500 * 100 = 61.2388</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>95.04
                    <Tare id="" wt="78.72"/>
                  </SampleWt>
                  <OpeningSize readable_size="#140" sizemm="0.106000" units="IN."/>
                  <PercentFiner>52.4101</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 113.2000 / (61.2388 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 96.8800 / 184.8500 * 100 = 52.4101</D>
</CALCDOC>

              </TestPoint>
              <TestPoint>
                <Sieve>
                  <SampleWt>8
                    <Tare id="" wt="3"/>
                  </SampleWt>
                  <OpeningSize readable_size="#200" sizemm="0.075000" units="IN."/>
                  <PercentFiner>49.7052</PercentFiner>
                </Sieve>
                <CALCDOC>
<D>     total weight = tested weight / (percent tested of total / 100)</D>
<D>        = 96.8800 / (52.4101 / 100) = 184.8500</D>
<D>     percent passing = weight passing / total weight * 100</D>
<D>        = 91.8800 / 184.8500 * 100 = 49.7052</D>
</CALCDOC>

              </TestPoint>
            </SieveTest>
            <HydrometerTest>
              <Hydrometer type="152H" a="0.164" b="16.294964"/>
              <AutoTempCorr corrAt20C="-6"/>
              <HygroscopicMoisture>
                <MOISTURE_DATA wet="301.88" dry="293.8" tare="52.1" tarename="" moist="3.3"/>
              </HygroscopicMoisture>
              <MeniscusCorrection val=".3"/>
              <SampleWt val="51.71"/>
              <PercentPassingSplit val="61.2"/>
              <SpecificGravity val="2.7"/>
              <Reading reading="47" timeMin="1" tempC="20">
                <OpeningSize sizemm="0.039281"/>
                <PercentFiner>49.5723</PercentFiner>
                <CALCDOC>
<D>     Hygroscopic moisture = (wet weight - dry weight) / (dry weight - tare weight)*100</D>
<D>         = (301.88 - 293.80)/(293.80 - 52.10) * 100 = 3.34</D>
<D>     Biased sample weight = sample weight * 10000 / (percent passing split sieve * (100+hygroscopic moisture))</D>
<D>       = 51.71 * 10000 / (61.24 * (100+3.34)) = 81.71</D>
<D>     Meniscus corrected reading = reading + meniscus correction = 47 + .3 = 47.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*47.3000 = 8.5378</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0100</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*20.00-0.00000751229*20.00^2+0.00000003605183*20.00^3 = 0.9982</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0100 / (980 * (2.7000 - 0.9982))) = 0.0134</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0134*sqrt(8.5378 / 1) = 0.0393</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 40.9593 * 0.9889 / 81.7084 = 49.5723</D>
</CALCDOC>

              </Reading>
              <Reading reading="44" timeMin="2" tempC="25.0">
                <OpeningSize sizemm="0.026890"/>
                <PercentFiner>47.5336</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 44 + .3 = 44.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*44.3000 = 9.0298</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0089</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*25.00-0.00000751229*25.00^2+0.00000003605183*25.00^3 = 0.9971</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0089 / (980 * (2.7000 - 0.9971))) = 0.0127</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0127*sqrt(9.0298 / 2) = 0.0269</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 39.2748 * 0.9889 / 81.7084 = 47.5336</D>
</CALCDOC>

              </Reading>
              <Reading reading="41" timeMin="3" tempC="25.0">
                <OpeningSize sizemm="0.022546"/>
                <PercentFiner>43.9028</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 41 + .3 = 41.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*41.3000 = 9.5218</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0089</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*25.00-0.00000751229*25.00^2+0.00000003605183*25.00^3 = 0.9971</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0089 / (980 * (2.7000 - 0.9971))) = 0.0127</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0127*sqrt(9.5218 / 3) = 0.0225</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 36.2748 * 0.9889 / 81.7084 = 43.9028</D>
</CALCDOC>

              </Reading>
              <Reading reading="38" timeMin="4" tempC="25.0">
                <OpeningSize sizemm="0.020023"/>
                <PercentFiner>40.2719</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 38 + .3 = 38.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*38.3000 = 10.0138</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0089</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*25.00-0.00000751229*25.00^2+0.00000003605183*25.00^3 = 0.9971</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0089 / (980 * (2.7000 - 0.9971))) = 0.0127</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0127*sqrt(10.0138 / 4) = 0.0200</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 33.2748 * 0.9889 / 81.7084 = 40.2719</D>
</CALCDOC>

              </Reading>
              <Reading reading="34" timeMin="8" tempC="23.5">
                <OpeningSize sizemm="0.014876"/>
                <PercentFiner>34.8599</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 34 + .3 = 34.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*34.3000 = 10.6698</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0092</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*23.50-0.00000751229*23.50^2+0.00000003605183*23.50^3 = 0.9975</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0092 / (980 * (2.7000 - 0.9975))) = 0.0129</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0129*sqrt(10.6698 / 8) = 0.0149</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 28.8032 * 0.9889 / 81.7084 = 34.8599</D>
</CALCDOC>

              </Reading>
              <Reading reading="29" timeMin="16" tempC="20">
                <OpeningSize sizemm="0.011392"/>
                <PercentFiner>27.7872</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 29 + .3 = 29.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*29.3000 = 11.4898</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0100</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*20.00-0.00000751229*20.00^2+0.00000003605183*20.00^3 = 0.9982</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0100 / (980 * (2.7000 - 0.9982))) = 0.0134</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0134*sqrt(11.4898 / 16) = 0.0114</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 22.9593 * 0.9889 / 81.7084 = 27.7872</D>
</CALCDOC>

              </Reading>
              <Reading reading="27" timeMin="30" tempC="20">
                <OpeningSize sizemm="0.008438"/>
                <PercentFiner>25.3666</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 27 + .3 = 27.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*27.3000 = 11.8178</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0100</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*20.00-0.00000751229*20.00^2+0.00000003605183*20.00^3 = 0.9982</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0100 / (980 * (2.7000 - 0.9982))) = 0.0134</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0134*sqrt(11.8178 / 30) = 0.0084</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 20.9593 * 0.9889 / 81.7084 = 25.3666</D>
</CALCDOC>

              </Reading>
              <Reading reading="25" timeMin="43" tempC="20">
                <OpeningSize sizemm="0.007145"/>
                <PercentFiner>22.9461</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 25 + .3 = 25.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*25.3000 = 12.1458</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0100</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*20.00-0.00000751229*20.00^2+0.00000003605183*20.00^3 = 0.9982</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0100 / (980 * (2.7000 - 0.9982))) = 0.0134</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0134*sqrt(12.1458 / 43) = 0.0071</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 18.9593 * 0.9889 / 81.7084 = 22.9461</D>
</CALCDOC>

              </Reading>
              <Reading reading="17" timeMin="123" tempC="22">
                <OpeningSize sizemm="0.004339"/>
                <PercentFiner>13.8075</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 17 + .3 = 17.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*17.3000 = 13.4578</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0096</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*22.00-0.00000751229*22.00^2+0.00000003605183*22.00^3 = 0.9978</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0096 / (980 * (2.7000 - 0.9978))) = 0.0131</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0131*sqrt(13.4578 / 123) = 0.0043</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 11.4085 * 0.9889 / 81.7084 = 13.8075</D>
</CALCDOC>

              </Reading>
              <Reading reading="14.2" timeMin="240" tempC="22">
                <OpeningSize sizemm="0.003159"/>
                <PercentFiner>10.4187</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 14.2 + .3 = 14.50</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*14.5000 = 13.9170</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0096</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*22.00-0.00000751229*22.00^2+0.00000003605183*22.00^3 = 0.9978</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0096 / (980 * (2.7000 - 0.9978))) = 0.0131</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0131*sqrt(13.9170 / 240) = 0.0032</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 8.6085 * 0.9889 / 81.7084 = 10.4187</D>
</CALCDOC>

              </Reading>
              <Reading reading="11" timeMin="975" tempC="22">
                <OpeningSize sizemm="0.001596"/>
                <PercentFiner>6.5458</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 11 + .3 = 11.30</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*11.3000 = 14.4418</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0096</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*22.00-0.00000751229*22.00^2+0.00000003605183*22.00^3 = 0.9978</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0096 / (980 * (2.7000 - 0.9978))) = 0.0131</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0131*sqrt(14.4418 / 975) = 0.0016</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 5.4085 * 0.9889 / 81.7084 = 6.5458</D>
</CALCDOC>

              </Reading>
              <Reading reading="8.4" timeMin="1485" tempC="22">
                <OpeningSize sizemm="0.001312"/>
                <PercentFiner>3.3991</PercentFiner>
                <CALCDOC>
<D>     Meniscus corrected reading = reading + meniscus correction = 8.4 + .3 = 8.70</D>
<D>     Effective depth = 16.2950 - 0.1640*meniscus corrected reading</D>
<D>        = 16.2950 - 0.1640*8.7000 = 14.8682</D>
<D>     Fluid viscosity = 0.01732483379693-5.041574656095E-04*temp+8.387438669317E-06*temp^2-7.401129271698E-08*temp^3+2.625994080072E-10*temp^4</D>
<D>        = 0.0096</D>
<D>     Fluid specific gravity = 0.99991003252+0.00005201921*temp(c)-0.00000751229*temp(c)^2+0.00000003605183*temp(c)^3</D>
<D>        = 0.99991003252+0.00005201921*22.00-0.00000751229*22.00^2+0.00000003605183*22.00^3 = 0.9978</D>
<D>     k = sqrt(30 * viscosity / (980 * (solids specific gravity - fluid specific gravity)))</D>
<D>       = sqrt(30 * 0.0096 / (980 * (2.7000 - 0.9978))) = 0.0131</D>
<D>     Particle diameter (mm) = k*sqrt(effective depth / elapsed time (min.))</D>
<D>        = 0.0131*sqrt(14.8682 / 1485) = 0.0013</D>
<D>     specific gravity correction = 0.6226415 * specific gravity / (specific gravity - 1)</D>
<D>        = 0.6226416 * 2.7000 / (2.7000 - 1) = 0.9889</D>
<D>     Percent finer = 100 * temp. and meniscus corrected reading * specific gravity correction / biased sample weight</D>
<D>        = 100 * 2.8085 * 0.9889 / 81.7084 = 3.3991</D>
</CALCDOC>

              </Reading>
            </HydrometerTest>
            <ShapingPoints>
            </ShapingPoints>
            <CalculatedResults>
              <Diameters>
                <Diameter percent="10" sizemm="0.0027"/>
                <Diameter percent="15" sizemm="0.0047"/>
                <Diameter percent="20" sizemm="0.0061"/>
                <Diameter percent="30" sizemm="0.0125"/>
                <Diameter percent="50" sizemm="0.0840"/>
                <Diameter percent="60" sizemm="0.1428"/>
                <Diameter percent="80" sizemm="1.4692"/>
                <Diameter percent="85" sizemm="154.7865"/>
                <Diameter percent="90" sizemm="174.2287"/>
                <Diameter percent="95" sizemm="203.0674"/>
                <Coefficients concavity="0.40" uniformity="52.14"/>
              </Diameters>
              <CalculatedPercentages>
                <Sieve name="PER6IN" percent="84.3"/>
                <Sieve name="PER5IN" percent="75.5"/>
                <Sieve name="PER4IN" percent="65.3"/>
                <Sieve name="PER3IN" percent="55.4"/>
                <Sieve name="PERTWO5" percent="51.5"/>
                <Sieve name="PER2IN" percent="49.1"/>
                <Sieve name="PERONE5" percent="49.3"/>
                <Sieve name="PERONEANDQUARTER" percent="51.1"/>
                <Sieve name="PER1IN" percent="54.6"/>
                <Sieve name="PERTHREEQ" percent="60.6"/>
                <Sieve name="PERFIVEEIGHT" percent="64.8"/>
                <Sieve name="PERHALFIN" percent="70.0"/>
                <Sieve name="PER375" percent="76.0"/>
                <Sieve name="PERFIVESIXTEEN" percent="79.1"/>
                <Sieve name="PERONEQ" percent="82.1"/>
                <Sieve name="PER4" percent="84.5"/>
                <Sieve name="PER5" percent="85.0"/>
                <Sieve name="PER6" percent="85.1"/>
                <Sieve name="PER7" percent="84.6"/>
                <Sieve name="PER8" percent="83.8"/>
                <Sieve name="PER10" percent="82.7"/>
                <Sieve name="PER12" percent="81.4"/>
                <Sieve name="PER14" percent="79.5"/>
                <Sieve name="PER16" percent="77.7"/>
                <Sieve name="PER18" percent="76.0"/>
                <Sieve name="PER20" percent="74.3"/>
                <Sieve name="PER25" percent="72.6"/>
                <Sieve name="PER30" percent="71.3"/>
                <Sieve name="PER35" percent="70.2"/>
                <Sieve name="PER40" percent="69.5"/>
                <Sieve name="PER45" percent="69.0"/>
                <Sieve name="PER50" percent="68.6"/>
                <Sieve name="PER60" percent="67.9"/>
                <Sieve name="PER70" percent="66.6"/>
                <Sieve name="PER80" percent="64.7"/>
                <Sieve name="PER100" percent="61.2"/>
                <Sieve name="PER120" percent="56.4"/>
                <Sieve name="PER140" percent="52.4"/>
                <Sieve name="PER170" percent="50.4"/>
                <Sieve name="PER200" percent="49.7"/>
                <Sieve name="PER230" percent="49.6"/>
                <Sieve name="PER270" percent="49.6"/>
                <Sieve name="PER300" percent="49.6"/>
                <Sieve name="PER325" percent="49.6"/>
                <Sieve name="PER400" percent="49.5"/>
                <Sieve name="PER200MM" percent="94.6"/>
                <Sieve name="PER75MM" percent="55.0"/>
                <Sieve name="PER53MM" percent="49.4"/>
                <Sieve name="PER37_5MM" percent="49.5"/>
                <Sieve name="PER26_5MM" percent="53.8"/>
                <Sieve name="PER19MM" percent="60.6"/>
                <Sieve name="PER13_2MM" percent="69.1"/>
                <Sieve name="PER9_5MM" percent="76.0"/>
                <Sieve name="PER6_7MM" percent="81.5"/>
                <Sieve name="PER4_75MM" percent="84.5"/>
                <Sieve name="PER2_36MM" percent="83.8"/>
                <Sieve name="PER1_18MM" percent="77.7"/>
                <Sieve name="PER_6MM" percent="71.3"/>
                <Sieve name="PER_425MM" percent="69.5"/>
                <Sieve name="PER_3MM" percent="68.6"/>
                <Sieve name="PER_15MM" percent="61.2"/>
                <Sieve name="PER_075MM" percent="49.7"/>
                <Sieve name="PER20M" percent="40.2"/>
                <Sieve name="PER005MM" percent="16.2"/>
                <Sieve name="PER2M" percent="9.2"/>
              </CalculatedPercentages>
              <Fractions>
                <Fraction name="BOULDER" percent=""/>
                <Fraction name="COBBLES" percent="44.0"/>
                <Fraction name="GRAVEL" percent="">
                  <Fraction name="COARSE_GRAVEL" percent=""/>
                  <Fraction name="MEDIUM_GRAVEL" percent=""/>
                  <Fraction name="FINE_GRAVEL" percent="0.0"/>
                </Fraction>
                <Fraction name="SAND" percent="33.1">
                  <Fraction name="COARSE_SAND" percent=""/>
                  <Fraction name="MEDIUM_SAND" percent="5.2"/>
                  <Fraction name="FINE_SAND" percent="48.6"/>
                </Fraction>
                <Fraction name="SILT" percent="40.4">
                  <Fraction name="COARSE_SILT" percent=""/>
                  <Fraction name="MEDIUM_SILT" percent="20.6"/>
                  <Fraction name="FINE_SILT" percent=""/>
                </Fraction>
                <Fraction name="CLAY" percent="9.2"/>
              </Fractions>
              <FinenessModulus>3.27</FinenessModulus>
            </CalculatedResults>
            <AdditionalData name="COBBLES" val="44.0"/>
            <AdditionalData name="FINE_GRAVEL" val="0.0"/>
            <AdditionalData name="SAND" val="33.1"/>
            <AdditionalData name="MEDIUM_SAND" val="5.2"/>
            <AdditionalData name="FINE_SAND" val="48.6"/>
            <AdditionalData name="SILT" val="40.4"/>
            <AdditionalData name="MEDIUM_SILT" val="20.6"/>
            <AdditionalData name="CLAY" val="9.2"/>
            <AdditionalData name="GS_CC" val="0.40"/>
            <AdditionalData name="GS_CU" val="52.14"/>
            <AdditionalData name="GS_SPECENV" val="ASTM C 33 - 3/4&quot; Aggregate"/>
            <AdditionalData name="PER6IN" val="84.3"/>
            <AdditionalData name="PER5IN" val="75.5"/>
            <AdditionalData name="PER4IN" val="65.3"/>
            <AdditionalData name="PER3IN" val="55.4"/>
            <AdditionalData name="PERTWO5" val="51.5"/>
            <AdditionalData name="PER2IN" val="49.1"/>
            <AdditionalData name="PERONE5" val="49.3"/>
            <AdditionalData name="PERONEANDQUARTER" val="51.1"/>
            <AdditionalData name="PER1IN" val="54.6"/>
            <AdditionalData name="PERTHREEQ" val="60.6"/>
            <AdditionalData name="PERFIVEEIGHT" val="64.8"/>
            <AdditionalData name="PERHALFIN" val="70.0"/>
            <AdditionalData name="PER375" val="76.0"/>
            <AdditionalData name="PERFIVESIXTEEN" val="79.1"/>
            <AdditionalData name="PERONEQ" val="82.1"/>
            <AdditionalData name="PER4" val="84.5"/>
            <AdditionalData name="PER5" val="85.0"/>
            <AdditionalData name="PER6" val="85.1"/>
            <AdditionalData name="PER7" val="84.6"/>
            <AdditionalData name="PER8" val="83.8"/>
            <AdditionalData name="PER10" val="82.7"/>
            <AdditionalData name="PER12" val="81.4"/>
            <AdditionalData name="PER14" val="79.5"/>
            <AdditionalData name="PER16" val="77.7"/>
            <AdditionalData name="PER18" val="76.0"/>
            <AdditionalData name="PER20" val="74.3"/>
            <AdditionalData name="PER25" val="72.6"/>
            <AdditionalData name="PER30" val="71.3"/>
            <AdditionalData name="PER35" val="70.2"/>
            <AdditionalData name="PER40" val="69.5"/>
            <AdditionalData name="PER45" val="69.0"/>
            <AdditionalData name="PER50" val="68.6"/>
            <AdditionalData name="PER60" val="67.9"/>
            <AdditionalData name="PER70" val="66.6"/>
            <AdditionalData name="PER80" val="64.7"/>
            <AdditionalData name="PER100" val="61.2"/>
            <AdditionalData name="PER120" val="56.4"/>
            <AdditionalData name="PER140" val="52.4"/>
            <AdditionalData name="PER170" val="50.4"/>
            <AdditionalData name="PER200" val="49.7"/>
            <AdditionalData name="PER230" val="49.6"/>
            <AdditionalData name="PER270" val="49.6"/>
            <AdditionalData name="PER300" val="49.6"/>
            <AdditionalData name="PER325" val="49.6"/>
            <AdditionalData name="PER400" val="49.5"/>
            <AdditionalData name="PER200MM" val="94.6"/>
            <AdditionalData name="PER75MM" val="55.0"/>
            <AdditionalData name="PER53MM" val="49.4"/>
            <AdditionalData name="PER37_5MM" val="49.5"/>
            <AdditionalData name="PER26_5MM" val="53.8"/>
            <AdditionalData name="PER19MM" val="60.6"/>
            <AdditionalData name="PER13_2MM" val="69.1"/>
            <AdditionalData name="PER9_5MM" val="76.0"/>
            <AdditionalData name="PER6_7MM" val="81.5"/>
            <AdditionalData name="PER4_75MM" val="84.5"/>
            <AdditionalData name="PER2_36MM" val="83.8"/>
            <AdditionalData name="PER1_18MM" val="77.7"/>
            <AdditionalData name="PER_6MM" val="71.3"/>
            <AdditionalData name="PER_425MM" val="69.5"/>
            <AdditionalData name="PER_3MM" val="68.6"/>
            <AdditionalData name="PER_15MM" val="61.2"/>
            <AdditionalData name="PER_075MM" val="49.7"/>
            <AdditionalData name="PER20M" val="40.2"/>
            <AdditionalData name="PER005MM" val="16.2"/>
            <AdditionalData name="PER2M" val="9.2"/>
            <AdditionalData name="D95" val="203.0674"/>
            <AdditionalData name="D90" val="174.2287"/>
            <AdditionalData name="D85" val="154.7865"/>
            <AdditionalData name="D80" val="1.4692"/>
            <AdditionalData name="D60" val="0.1428"/>
            <AdditionalData name="D50" val="0.0840"/>
            <AdditionalData name="D30" val="0.0125"/>
            <AdditionalData name="D20" val="0.0061"/>
            <AdditionalData name="D15" val="0.0047"/>
            <AdditionalData name="D10" val="0.0027"/>
            <AdditionalData name="FINENESSMOD" val="3.27"/>
            <AdditionalData name="DIDMECH" val="Y"/>
            <AdditionalData name="DIDHYD" val="Y"/>
            <AdditionalData name="GS_TESTEDBY" val="Tested By"/>
            <AdditionalData name="GS_CHECKEDBY" val="Checked By"/>
            <AdditionalData name="NM" val="NM"/>
            <AdditionalData name="LLOVEN" val="48"/>
            <AdditionalData name="LI" val="1.2"/>
            <AdditionalData name="HIGHLY_ORGANIC" val="N"/>
            <AdditionalData name="PCPriComp" val="0"/>
            <AdditionalData name="USDA" val="Loam"/>
            <AdditionalData name="USDA_SANDFRAC" val="40.0"/>
            <AdditionalData name="USDA_SILTFRAC" val="48.9"/>
            <AdditionalData name="USDA_CLAYFRAC" val="11.1"/>
            <AdditionalData name="USDA_" val="Loam"/>
            <AdditionalData name="PRTEST_SPEC" val="ASTM D 698-91 Procedure A"/>
            <AdditionalData name="CL_CHECKEDBY" val="A. Dork"/>
            <AdditionalData name="GS_REMARKS" val="Testing Remarks&#10;Go Here"/>
            <AdditionalData name="PER074MM" val="49.7"/>
          </GS_DATA>
          <CLASSIFICATION>
            <SAMPLE_IDENTIFIER></SAMPLE_IDENTIFIER>
            <DEPTH></DEPTH>
            <LIQUID_LIMIT>34</LIQUID_LIMIT>
            <PLASTIC_LIMIT>8</PLASTIC_LIMIT>
            <PLASTICITY_INDEX>26</PLASTICITY_INDEX>
            <USCS></USCS>
          </CLASSIFICATION>
        </LABORATORY_TESTS>
      </BOREHOLE>
    </GROUND_INVESTIGATION>
  </SITE_INVESTIGATION>
  <GS_PROGRAM_SETTINGS>
    <ChartReportTitle>Particle Size Distribution Report</ChartReportTitle>
    <MinD60Diameter set="0"/>
    <MinD80Diameter set="0"/>
    <PercentageDecimals set="1"/>
    <ReportNumber200To1DecimalPlace set="no"/>
    <ReportForm set="GSGEOSYS"/>
    <UsesTareIDs set="no"/>
    <AddFinenessModulusToRemarks set="no"/>
    <ReportCobblesAs set="+3&quot;"/>
    <MaterialLabel>
      Material Description
    </MaterialLabel>
    <ChartOptions>
      <ChartStyle set="PHI"/>
      <DoNotPlot2PtCurves set="yes"/>
      <PercentRetainedScale set="LEFTSIDE"/>
      <LeftHandCaption>
        Left hand caption
      </LeftHandCaption>
      <RightHandCaption>
        Right hand caption
      </RightHandCaption>
      <BottomCaption>
        Bottom caption
      </BottomCaption>
      <MinOpeningSize>
        <OpeningSize readable_size=".001" units="MM"/>
      </MinOpeningSize>
      <MaxOpeningSize>
        <OpeningSize readable_size="500" units="MM"/>
      </MaxOpeningSize>
      <MinimumSpecSievesForChart set="1"/>
      <RelativeCurveWidth set="7"/>
      <PtToPtCurve set="no"/>
    </ChartOptions>
    <CommonSettings>
      <AddCheckedBy set="no"/>
      <AddTestedBy set="no"/>
      <Disclaimer set="yes">
        Report Disclaimer Goes Here
      </Disclaimer>
      <UseTareIDS set="no"/>
      <DensUnits set="PCF"/>
      <DensRounding set="DENSROUNDONE"/>
    </CommonSettings>
  </GS_PROGRAM_SETTINGS>
</GEOTECHNICAL_PROJECT>

