Acetone (MW = 58 g/mol) vapor is compressed to 15 atm and 300°C. Use the virial equation of state to determine the vapor mass density (g/L). For acetone, T. = 235°C, Pc = 47 atm, and c = 0.307. a. Determine T, and Pr. b. Determine the second virial coefficient (B). c. Determine the specific volume of acetone (L/mol). d. Determine the vapor mass density (g/L). e. What is the volumetric flowrate of 5 kg/s of this gas stream? Give your answer in units of standard m³/s.

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
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Acetone (MW = 58 g/mol) vapor is compressed to 15 atm and 300°C. Use the virial equation of
state to determine the vapor mass density (g/L). For acetone, Te = 235°C, Pc = 47 atm, and =
0.307.
a. Determine T, and Pr.
b. Determine the second virial coefficient (B).
c. Determine the specific volume of acetone (L/mol).
d. Determine the vapor mass density (g/L).
e. What is the volumetric flowrate of 5 kg/s of this gas stream? Give your answer in units
of standard m³/s.
Transcribed Image Text:Acetone (MW = 58 g/mol) vapor is compressed to 15 atm and 300°C. Use the virial equation of state to determine the vapor mass density (g/L). For acetone, Te = 235°C, Pc = 47 atm, and = 0.307. a. Determine T, and Pr. b. Determine the second virial coefficient (B). c. Determine the specific volume of acetone (L/mol). d. Determine the vapor mass density (g/L). e. What is the volumetric flowrate of 5 kg/s of this gas stream? Give your answer in units of standard m³/s.
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