3.43.0 g of 40 Ar gas are sealed in a container at an initial pressure of 1.50 atm and an initial volume of 0.0500 m³ (state 1). The gas is then made to expand very, very quickly until its volume doubles (state 2). Then it is compressed very, very slowly back to its initial volume (state 3). Show the two processes on a pV diagram, and fill out the table below. Be sure to show your work for full credit. P1 = V₁ = T₁ = P2 = V₂ = T₂ = P3 = V3 = T3 =

Introduction to Chemical Engineering Thermodynamics
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ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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3.43.0 g of 40 Ar gas are sealed in a container at an initial pressure of 1.50 atm and an initial volume of 0.0500 m³
(state 1). The gas is then made to expand very, very quickly until its volume doubles (state 2). Then it is
compressed very, very slowly back to its initial volume (state 3).
Show the two processes on a pV diagram, and fill out the table below. Be sure to show your work for full credit.
P1 =
V₁ =
T₁ =
P2 =
V₂ =
T₂ =
P3 =
V3 =
T3 =
Transcribed Image Text:3.43.0 g of 40 Ar gas are sealed in a container at an initial pressure of 1.50 atm and an initial volume of 0.0500 m³ (state 1). The gas is then made to expand very, very quickly until its volume doubles (state 2). Then it is compressed very, very slowly back to its initial volume (state 3). Show the two processes on a pV diagram, and fill out the table below. Be sure to show your work for full credit. P1 = V₁ = T₁ = P2 = V₂ = T₂ = P3 = V3 = T3 =
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