a) Calculate the pressure exerted by 5 kg of Carbon dioxide gas placed in a 2000-liter vessel at a temperature of 47°C using Soave modification of Redlick Kwong equation of state if a=0.5. RT Vm-b a p= 0.42748 R² T2 Pe aa Vm (Vm + b) 0.08664 RT Pe b) Also, determine the pressure of the gas if it behaves ideally in nature. c) If volume occupied by CO2 was reduced by 500L, then calculate the new pressure exerted by 1kg of CO₂ if the temperature of the gas changed to 273⁰ K, assuming that CO₂ behaves ideally in nature. (Note: Use the thermodynamic property table are provided)

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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a) Calculate the pressure exerted by 5 kg of Carbon dioxide gas placed in a
2000-liter vessel at a temperature of 47°C using Soave modification of
Redlick Kwong equation of state if a=0.5.
RT
p= Vm-b
a a
Vm (Vm + b)
0.42748 R² T
Pe
b) Also, determine the pressure of the gas if it behaves ideally in nature.
c) If volume occupied by CO2 was reduced by 500L, then calculate the new
pressure exerted by 1kg of CO2 if the temperature of the gas changed
to 273° K, assuming that CO₂ behaves ideally in nature.
(Note: Use the thermodynamic property table are provided)
b=
0.08664 RT
Pe
Transcribed Image Text:a) Calculate the pressure exerted by 5 kg of Carbon dioxide gas placed in a 2000-liter vessel at a temperature of 47°C using Soave modification of Redlick Kwong equation of state if a=0.5. RT p= Vm-b a a Vm (Vm + b) 0.42748 R² T Pe b) Also, determine the pressure of the gas if it behaves ideally in nature. c) If volume occupied by CO2 was reduced by 500L, then calculate the new pressure exerted by 1kg of CO2 if the temperature of the gas changed to 273° K, assuming that CO₂ behaves ideally in nature. (Note: Use the thermodynamic property table are provided) b= 0.08664 RT Pe
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