A vapor composed of 0.20 mole fraction ethanol and 0.80 mole fraction acetic acid at 120.0 mmHg (absolute), is in equilibriu with a liquid phase also composed of ethanol and acetic acid. Assume that the liquid is an ideal solution. Apply Raoult's law to find the temperature, T, of the liquid and the mole fractions, XE and XA, of the liquid phase. T = °C

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A vapor composed of 0.20 mole fraction ethanol and 0.80 mole fraction acetic acid at 120.0 mmHg (absolute) is in equilibrium with a liquid phase also composed of ethanol and acetic acid.

Assume that the liquid is an ideal solution. Apply Raoult's law to find the temperature, \( T \), of the liquid and the mole fractions, \( x_E \) and \( x_A \), of the liquid phase.

- \( T = \) ______ °C

- \( x_E = \) ______ mol ethanol/mol

- \( x_A = \) ______ mol acetic acid/mol
Transcribed Image Text:A vapor composed of 0.20 mole fraction ethanol and 0.80 mole fraction acetic acid at 120.0 mmHg (absolute) is in equilibrium with a liquid phase also composed of ethanol and acetic acid. Assume that the liquid is an ideal solution. Apply Raoult's law to find the temperature, \( T \), of the liquid and the mole fractions, \( x_E \) and \( x_A \), of the liquid phase. - \( T = \) ______ °C - \( x_E = \) ______ mol ethanol/mol - \( x_A = \) ______ mol acetic acid/mol
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