A rigid tank contains 1 kg of oxygen (O₂) at p₁ = 25 bar, T₁ = 180 K. The gas is cooled until the temperature drops to 150 K. Determine the volume of the tank, in m³, and the final pressure, in bar, using the: (a) ideal gas equation of state. (b) Redlich-Kwong equation. Part A Determine the volume of the tank, in m³, and the final pressure, in bar, using the ideal gas equation of state. V = P2 = i i m³ bar

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter1: Gases And The Zeroth Law Of Thermodynamics
Section: Chapter Questions
Problem 1.32E
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A rigid tank contains 1 kg of oxygen (O₂) at p₁ = 25 bar, T₁ = 180 K. The gas is cooled until the temperature drops to 150 K.
Determine the volume of the tank, in m³, and the final pressure, in bar, using the:
(a) ideal gas equation of state.
(b) Redlich-Kwong equation.
Part A
Determine the volume of the tank, in m³, and the final pressure, in bar, using the ideal gas equation of state.
V =
P₂ =
i
i
m³
bar
Transcribed Image Text:A rigid tank contains 1 kg of oxygen (O₂) at p₁ = 25 bar, T₁ = 180 K. The gas is cooled until the temperature drops to 150 K. Determine the volume of the tank, in m³, and the final pressure, in bar, using the: (a) ideal gas equation of state. (b) Redlich-Kwong equation. Part A Determine the volume of the tank, in m³, and the final pressure, in bar, using the ideal gas equation of state. V = P₂ = i i m³ bar
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