<compilation>
 <compilers>Nikolai I. Lisov, Valerii P. Sazonov</compilers>
 <dataset>
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    <property>Surface Tension</property>
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    <unit>dyn/cm</unit>
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   <data></data>
   <pntnum>3</pntnum>
   <supplemental>
    <exponent>1</exponent>
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    <property>Surface Tension</property>
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    <property>Surface Tension</property>
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   <conditions>
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    <unit>$\pu{K}$</unit>
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   <conditions>
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    <property>Mass density</property>
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    <unit>g/L</unit>
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   <data></data>
   <pntnum>5</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.812e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
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    <unit>dyn/cm</unit>
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  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.6203e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
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    <unit>&amp;deg;C</unit>
   </conditions>
   <conditions>
    <exponent>2</exponent>
    <number>2.99353e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>6</sigfigs>
    <significand>2.99353</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
    <property>Mass density</property>
    <unit>g/L</unit>
    <value>-</value>
   </conditions>
   <data></data>
   <pntnum>6</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.814e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.814</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <series>1</series>
  <title>Densities and surface tensions of the equilibrium liquid phases system nitroethane (1) + 3-methylpentane (2)</title>
 </dataset>
 <dataset>
  <points>
   <conditions>
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    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
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    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>9.308</significand>
    <unit>g/L</unit>
   </conditions>
   <data></data>
   <pntnum>1</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.973e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.973</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
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    <property>Ambient temperature</property>
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    <unit>&amp;deg;C</unit>
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   <conditions>
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    <property>Mass density</property>
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    <significand>9.033</significand>
    <unit>g/L</unit>
   </conditions>
   <data></data>
   <pntnum>2</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.900e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.900</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
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    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
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    <unit>&amp;deg;C</unit>
   </conditions>
   <conditions>
    <exponent>2</exponent>
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    <property>Ambient temperature</property>
    <sigfigs>6</sigfigs>
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    <unit>$\pu{K}$</unit>
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   <conditions>
    <exponent>2</exponent>
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    <property>Mass density</property>
    <sigfigs>4</sigfigs>
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    <unit>g/L</unit>
   </conditions>
   <data></data>
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    <exponent>1</exponent>
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    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.870</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
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    <property>Ambient temperature</property>
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    <unit>$\pu{K}$</unit>
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   <conditions>
    <property>Mass density</property>
    <unit>g/L</unit>
    <value>-</value>
   </conditions>
   <data></data>
   <pntnum>4</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.833e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.833</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.6005e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
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    <unit>&amp;deg;C</unit>
   </conditions>
   <conditions>
    <exponent>2</exponent>
    <number>2.99155e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>6</sigfigs>
    <significand>2.99155</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
    <exponent>2</exponent>
    <number>8.364e+02</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>8.364</significand>
    <unit>g/L</unit>
   </conditions>
   <data></data>
   <pntnum>5</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.819e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.819</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.6203e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
    <significand>2.6203</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <conditions>
    <exponent>2</exponent>
    <number>2.99353e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>6</sigfigs>
    <significand>2.99353</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
    <property>Mass density</property>
    <unit>g/L</unit>
    <value>-</value>
   </conditions>
   <data></data>
   <pntnum>6</pntnum>
   <supplemental>
    <exponent>1</exponent>
    <number>1.814e+01</number>
    <property>Surface Tension</property>
    <sigfigs>4</sigfigs>
    <significand>1.814</significand>
    <unit>dyn/cm</unit>
   </supplemental>
  </points>
  <series>2</series>
  <title>Densities and surface tensions of the equilibrium liquid phases system nitroethane (1) + 3-methylpentane (2)</title>
 </dataset>
 <keywords>Solubility, Solubility data series</keywords>
 <method>The synthetic method was used. Mixtures of near-critical composition were made in glass tubes, closed at one end and joined to vacuum-tight Teflon-glass valves. Phase-separation temperatures were determined visually. The critical composition sample was the one most opalescent at its phase-separation temperature. Two different pycnometers, volumes 25 mL and 50 mL, of the type glass-bulb-to-capillary, were used to determine densities of mixtures. Surface tension was measured by the differential-capillary-rise method using a sample cell adapted from Calado, et al. [1].</method>
 <publisher>The International Union of Pure and Applied Chemistry</publisher>
 <reference>
  <citation>Calado, J. C. G.; McLure, I. A.; Soares, V. A. M.; Fluid Phase Equilib. 2, 199 (1978).</citation>
  <pubtype>paper</pubtype>
  <url>https://doi.org/10.1016/0378-3812(78)80009-0</url>
 </reference>
 <sources>
  <citation>Khosla, M. P.; Widom, B.; J. Colloid Interface Sci. 76, 375-392 (1980).</citation>
  <pubtype>paper</pubtype>
  <url>https://doi.org/10.1016/0021-9797(80)90380-x</url>
 </sources>
 <substances>
  <casrn>79-24-3</casrn>
  <constituent>1</constituent>
  <formula>C2H5NO2</formula>
  <inchi>InChI=1S/C2H5NO2/c1-2-3(4)5/h2H2,1H3</inchi>
  <inchikey>MCSAJNNLRCFZED-UHFFFAOYSA-N</inchikey>
  <molweight>75.0666</molweight>
  <name>Nitroethane</name>
  <sample>Aldrich Chemical Inc.; purity 96.0 mass%; dried and double distilled under a reduced pressure in a 36 in. glass column; purity 99.96-99.98 mass%.</sample>
 </substances>
 <substances>
  <casrn>96-14-0</casrn>
  <constituent>2</constituent>
  <formula>C6H14</formula>
  <inchi>InChI=1S/C6H14/c1-4-6(3)5-2/h6H,4-5H2,1-3H3</inchi>
  <inchikey>PFEOZHBOMNWTJB-UHFFFAOYSA-N</inchikey>
  <molweight>86.1754</molweight>
  <name>3-Methylpentane</name>
  <sample>Aldrich Chemical Inc.; research grade; purity 96.0 mass%; distilled at atmospheric pressure in the 36 in. glass column; purity 99.99 mass% by GLC.</sample>
 </substances>
 <system>Nitroethane with 3-Methylpentane</system>
 <title>Solubility data from IUPAC SDS Volume 77 (page ?) - Nitroethane with 3-Methylpentane</title>
</compilation>