5. 21.3 cubic feet of argon at 220 psia and 108°F, and 34.2 cubic feet of air at 145 psia and 308 °F are injected into a steel vessel that has a volume of 16.2 cubic feet. After the gases are injected, the vessel is slowly cooled down to room temperature (71.0 °F). You can assume the mixture behaves as an ideal gas. After the vessel has cooled, for argon, nitrogen, and oxygen, please calculate: a. The partial pressure of each gas in psia. b. The pure component volume of each gas in cubic feet.
5. 21.3 cubic feet of argon at 220 psia and 108°F, and 34.2 cubic feet of air at 145 psia and 308 °F are injected into a steel vessel that has a volume of 16.2 cubic feet. After the gases are injected, the vessel is slowly cooled down to room temperature (71.0 °F). You can assume the mixture behaves as an ideal gas. After the vessel has cooled, for argon, nitrogen, and oxygen, please calculate: a. The partial pressure of each gas in psia. b. The pure component volume of each gas in cubic feet.
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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Please use line calculations, any refrences from textbook and explain each step

Transcribed Image Text:Chemical Engineering 2D04 - Assignment 5
Due Wednesday, November 23rd at 11:59pm (via Avenue)
Please make sure that you show all of your work. Please use line calculations and show all units throughout
intermediate steps and in your final answer. Please combine all of your solutions into one file and upload
by the deadline. Solutions must be uploaded in pdf form.
5. 21.3 cubic feet of argon at 220 psia and 108°F, and 34.2 cubic feet of air at 145 psia and 308 °F are
injected into a steel vessel that has a volume of 16.2 cubic feet. After the gases are injected, the
vessel is slowly cooled down to room temperature (71.0 °F). You can assume the mixture behaves as
an ideal gas. After the vessel has cooled, for argon, nitrogen, and oxygen, please calculate:
a. The partial pressure of each gas in psia.
b. The pure component volume of each gas in cubic feet.
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