A binary mixture of mole fraction z, is flashed to condition T and P. For one of the ollowing determine the equilibrium mole fractions x, and y, of the liquid and vapor phase formed, the molar fraction y of the vapor formed Assume that Raoult's law applies. 1-Chlorobutane(1)/Chlorobenzene(2), Z₁=0.5 InP₁ (Pa) 13.7965 - InP₂ (Pa)= 13.8635 2723.73 T()+218.265 125 3174.78 T (c)+211.F 125°C) 125°C P-1.75 bar.

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
Chapter1: Introduction
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A binary mixture of mole fraction z, is flashed to condition T and P. For one of the
ollowing determine the equilibrium mole fractions x, and y, of the liquid and vapor
phase formed, the molar fraction v of the vapor formed Assume that Raoult's law
applies.
1-Chlorobutane(1)/Chlorobenzene(2), Z₁-0.5-125°C P-1.75 bar.
InP₁ (Pa) = 13.7965
-
InP₂ (Pa)= 13.8635 -
2723.73
T(c)+218.265
125
3174.78
T (c)+211.7
Transcribed Image Text:A binary mixture of mole fraction z, is flashed to condition T and P. For one of the ollowing determine the equilibrium mole fractions x, and y, of the liquid and vapor phase formed, the molar fraction v of the vapor formed Assume that Raoult's law applies. 1-Chlorobutane(1)/Chlorobenzene(2), Z₁-0.5-125°C P-1.75 bar. InP₁ (Pa) = 13.7965 - InP₂ (Pa)= 13.8635 - 2723.73 T(c)+218.265 125 3174.78 T (c)+211.7
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