For the system n-pentane and n-heptane the vapor pressure are given by the constants. Assuming that the solution formed is ideal, calculate: A) The total pressure and the vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in kPa) 2) The vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in %) 2.1 Pentane: y1 3) The composition of the liquid and the vapor in equilibrium at 130 kPa and 335K. (Answer in %) 3.1 Pentane: x1 3.2 Pentane: y1
For the system n-pentane and n-heptane the vapor pressure are given by the constants. Assuming that the solution formed is ideal, calculate: A) The total pressure and the vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in kPa) 2) The vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in %) 2.1 Pentane: y1 3) The composition of the liquid and the vapor in equilibrium at 130 kPa and 335K. (Answer in %) 3.1 Pentane: x1 3.2 Pentane: y1
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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For the system n-pentane and n-heptane the vapor pressure are given by the constants. Assuming that the solution formed is ideal, calculate:
A) The total pressure and the vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in kPa)
2) The vapor composition in equilibrium with a liquid of composition x=0.40 at 335 K. (Answer in %)
2.1 Pentane: y1
3) The composition of the liquid and the vapor in equilibrium at 130 kPa and 335K. (Answer in %)
3.1 Pentane: x1
3.2 Pentane: y1
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