deal. ata for this solution: p (CH2C12) = 1.33 gem³; p ar volume of CH2CI2 = 56.5 cm³mol"'; partial n %3D ol·'. Calculate AmixV

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter11: Solutions
Section: Chapter Questions
Problem 46P
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3. (a) At 10 °C, the vapour pressures of pure chloroform (CHCI;) and pure dichloromethane
(CH2CI2) are 101 mmHg and 235 mmHg, respectively. Assume that a solution made by
mixing CHCI3 and CH;Cl2 is ideal.
ii. Given the following data for this solution: p (CH2C12) = 1.33 gcm³; p (CHC13) =
1.48 gcm3; partial molar volume of CH2C12 = 56.5 cm³mol·'; partial molar volume
of CHC13 = 77.3 cm³mol'. Calculate AmixV
Transcribed Image Text:3. (a) At 10 °C, the vapour pressures of pure chloroform (CHCI;) and pure dichloromethane (CH2CI2) are 101 mmHg and 235 mmHg, respectively. Assume that a solution made by mixing CHCI3 and CH;Cl2 is ideal. ii. Given the following data for this solution: p (CH2C12) = 1.33 gcm³; p (CHC13) = 1.48 gcm3; partial molar volume of CH2C12 = 56.5 cm³mol·'; partial molar volume of CHC13 = 77.3 cm³mol'. Calculate AmixV
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