The vapor pressure of component A is 300.3 torr, and that of component B is 7O torr at 35 °C. A Solution of A and B at 35 °C with x = 0.300 has a vapor pressure of 70.3 torr and a vapor composition of x 0.275. (i) Calculate yand a for component A and for component B in this solution. %3D (ii) Calculate u – Hi for each component of this solution.

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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= The vapor pressure of component A is 300.3 torr, and that of component B is 70
torr at 35 °C. A Solution of A and B at 35 °C with x = 0.300 has a vapor
%3D
pressure of 70.3 torr and a vapor composition of x 0.275.
(i) Calculate Yand a for component A and for component B in this solution.
(ii) Calculate u - pi for each component of this solution.
(iii) Calculate AG for the mixing of 0.200 mole of liquid component B and 0.800
mole of liquid chloroform at 35 °C.
(iv) Calculate AGmix for the corresponding ideal solution.
Transcribed Image Text:= The vapor pressure of component A is 300.3 torr, and that of component B is 70 torr at 35 °C. A Solution of A and B at 35 °C with x = 0.300 has a vapor %3D pressure of 70.3 torr and a vapor composition of x 0.275. (i) Calculate Yand a for component A and for component B in this solution. (ii) Calculate u - pi for each component of this solution. (iii) Calculate AG for the mixing of 0.200 mole of liquid component B and 0.800 mole of liquid chloroform at 35 °C. (iv) Calculate AGmix for the corresponding ideal solution.
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