<compilation>
 <compilers>Ari L. Horvath</compilers>
 <dataset>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.0e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>2</sigfigs>
    <significand>2.0</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <data></data>
   <pntnum>1</pntnum>
   <supplemental>
    <exponent>-1</exponent>
    <number>7.49e-01</number>
    <property>Percent mass fraction (1)</property>
    <sigfigs>3</sigfigs>
    <significand>7.49</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>-3</exponent>
    <number>2.10e-03</number>
    <property>Mole fraction - Liquid (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.10</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>0</exponent>
    <number>2.12e+00</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>2.12</significand>
    <unit>1</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.5e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>2</sigfigs>
    <significand>2.5</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <data></data>
   <pntnum>2</pntnum>
   <supplemental>
    <exponent>-1</exponent>
    <number>6.71e-01</number>
    <property>Percent mass fraction (1)</property>
    <sigfigs>3</sigfigs>
    <significand>6.71</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>-3</exponent>
    <number>1.88e-03</number>
    <property>Mole fraction - Liquid (1)</property>
    <sigfigs>3</sigfigs>
    <significand>1.88</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>0</exponent>
    <number>1.62e+00</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>1.62</significand>
    <unit>1</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>3.0e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>2</sigfigs>
    <significand>3.0</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <data></data>
   <pntnum>3</pntnum>
   <supplemental>
    <exponent>-1</exponent>
    <number>6.61e-01</number>
    <property>Percent mass fraction (1)</property>
    <sigfigs>3</sigfigs>
    <significand>6.61</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>-3</exponent>
    <number>1.85e-03</number>
    <property>Mole fraction - Liquid (1)</property>
    <sigfigs>3</sigfigs>
    <significand>1.85</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>0</exponent>
    <number>1.37e+00</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>1.37</significand>
    <unit>1</unit>
   </supplemental>
  </points>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>4.0e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>2</sigfigs>
    <significand>4.0</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <data></data>
   <pntnum>4</pntnum>
   <supplemental>
    <exponent>-1</exponent>
    <number>5.73e-01</number>
    <property>Percent mass fraction (1)</property>
    <sigfigs>3</sigfigs>
    <significand>5.73</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>-3</exponent>
    <number>1.61e-03</number>
    <property>Mole fraction - Liquid (1)</property>
    <sigfigs>3</sigfigs>
    <significand>1.61</significand>
    <unit>1</unit>
   </supplemental>
   <supplemental>
    <exponent>-1</exponent>
    <number>8.9e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>2</sigfigs>
    <significand>8.9</significand>
    <unit>1</unit>
   </supplemental>
  </points>
  <series>1</series>
 </dataset>
 <keywords>Solubility, Solubility data series</keywords>
 <method>An all glass apparatus which consisted of a liquid container with a mechanical stirrer and a gas storage tube was used for measurements. Water was saturated with gaseous chloroethane at a pressure of 750 mmHg. The absorbed gas volume was calculated from the initial dry gas and final solvent vapor saturated gas volume. The amount of solvent was determined by measuring the displacement of a mercury mass.</method>
 <publisher>The International Union of Pure and Applied Chemistry</publisher>
 <sources>
  <citation>Nicloux, M.; Scotti-Foglieni, L.; Ann. Physiol. Physicochim. Biol. 1929, 5, 434-82.</citation>
  <pubtype>paper</pubtype>
 </sources>
 <substances>
  <casrn>7732-18-5</casrn>
  <constituent>2</constituent>
  <formula>H2O</formula>
  <inchi>InChI=1S/H2O/h1H2</inchi>
  <inchikey>XLYOFNOQVPJJNP-UHFFFAOYSA-N</inchikey>
  <molweight>18.0153</molweight>
  <name>Water</name>
  <sample>Distilled (compiler).</sample>
 </substances>
 <substances>
  <casrn>75-00-3</casrn>
  <constituent>1</constituent>
  <formula>C2H5Cl</formula>
  <inchi>InChI=1S/C2H5Cl/c1-2-3/h2H2,1H3</inchi>
  <inchikey>HRYZWHHZPQKTII-UHFFFAOYSA-N</inchikey>
  <molweight>64.5141</molweight>
  <name>Chloroethane</name>
  <sample>Laboratory reagent, source and purity not given.</sample>
 </substances>
 <system>Chloroethane with Water</system>
 <title>Solubility data from IUPAC SDS Volume 67 (page 615) - Chloroethane with Water</title>
</compilation>