Q3. For the system of acetone(1)/acetonitrile(2) the vapor pressure of pure species are given by: 2940.46 In P/kPa -14.5463- 1"C+ 237.22 2945.47 1C+224.00 In p /APa -14.2724- Assuming Raoult's law to describe the vapor/liquid equilibrium states of this system, determine: (a) x. y, for the equilibrium phases at 54°C, 65 kPa (b) t and y,, for P= 65 kPa and x, = 0.4. (c) Pand y, for t= 54°C and x, 0.4 (d) Pand x, for t = 54°C and y,= 0.4 (e) The fraction of the system that is liquid and vapor at 54°C and 65kPa, when the overall composition of the system is 70 mole percent acetone.
Q3. For the system of acetone(1)/acetonitrile(2) the vapor pressure of pure species are given by: 2940.46 In P/kPa -14.5463- 1"C+ 237.22 2945.47 1C+224.00 In p /APa -14.2724- Assuming Raoult's law to describe the vapor/liquid equilibrium states of this system, determine: (a) x. y, for the equilibrium phases at 54°C, 65 kPa (b) t and y,, for P= 65 kPa and x, = 0.4. (c) Pand y, for t= 54°C and x, 0.4 (d) Pand x, for t = 54°C and y,= 0.4 (e) The fraction of the system that is liquid and vapor at 54°C and 65kPa, when the overall composition of the system is 70 mole percent acetone.
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
Section: Chapter Questions
Problem 1.1P
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