Ammonia vapor is compressed to 60 bar and 105°C. Use the SRK equation of state to determine the vapor mass density (g/L). For ammonia, Te = 405.5 K, P = 111.3 atm, and co = 0.257. a. Determine Tr, a, b, m, and a. b. Plot the pressure as a function of specific volume over a range of 0.05-5 L/mol. Make sure to properly label the axes. Plot a sufficient number of points to get a smooth curve and use a logarithmic scale for the x-axis. You must use Excel to prepare your plot. Axes should be properly labelled, and the plot must have a title. c. Determine the specific volume of ammonia vapor at 60 bar and 105°C (L/mol). d. Determine the vapor mass density (g/L).
Ammonia vapor is compressed to 60 bar and 105°C. Use the SRK equation of state to determine the vapor mass density (g/L). For ammonia, Te = 405.5 K, P = 111.3 atm, and co = 0.257. a. Determine Tr, a, b, m, and a. b. Plot the pressure as a function of specific volume over a range of 0.05-5 L/mol. Make sure to properly label the axes. Plot a sufficient number of points to get a smooth curve and use a logarithmic scale for the x-axis. You must use Excel to prepare your plot. Axes should be properly labelled, and the plot must have a title. c. Determine the specific volume of ammonia vapor at 60 bar and 105°C (L/mol). d. Determine the vapor mass density (g/L).
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
Related questions
Question
How do I get the graph to look like this?

Transcribed Image Text:Real Gasses
Ammonia vapor is compressed to 60 bar and 105°C. Use the SRK equation of state to determine
the vapor mass density (g/L). For ammonia, T. = 405.5 K, Pc = 111.3 atm, and to = 0.257.
a. Determine Tr, a, b, m, and a.
b. Plot the pressure as a function of specific volume over a range of 0.05-5 L/mol. Make
sure to properly label the axes. Plot a sufficient number of points to get a smooth curve
and use a logarithmic scale for the x-axis. You must use Excel to prepare your plot. Axes
should be properly labelled, and the plot must have a title.
c. Determine the specific volume of ammonia vapor at 60 bar and 105°C (L/mol).
d. Determine the vapor mass density (g/L).

Transcribed Image Text:Pressure (atm)
1500
1000
500
0
Pressure Vs Volume
10⁰
Volume (L/mol)
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