An ideal gas in a closed system starting at 1 bar and 1200 K undergoes a three-step cycle: (i.) isobaric cooling to an unknown temperature (ii.) isochoric compression to 5 bar (iii) adiabatic expansion back to 1 bar If Cp is taken to be a constant Cp=30 J/mol·K, complete the following: State 1 (Initial & Final) 2 (after step i) 3 (after step ii) T (K) 1200 P (bar) 5 V (cm³/mol) by

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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An ideal gas in a closed system starting at 1 bar and 1200 K undergoes a three-step cycle:
(i.) isobaric cooling to an unknown temperature
(ii.) isochoric compression to 5 bar
(iii.) adiabatic expansion back to 1 bar
If Cp is taken to be a constant Cp=30 J/mol·K, complete the following:
State
1 (Initial & Final)
2 (after step i)
3 (after step ii)
T (K)
1200
Р (bar)
1
5
V (cm³/mol)
Transcribed Image Text:An ideal gas in a closed system starting at 1 bar and 1200 K undergoes a three-step cycle: (i.) isobaric cooling to an unknown temperature (ii.) isochoric compression to 5 bar (iii.) adiabatic expansion back to 1 bar If Cp is taken to be a constant Cp=30 J/mol·K, complete the following: State 1 (Initial & Final) 2 (after step i) 3 (after step ii) T (K) 1200 Р (bar) 1 5 V (cm³/mol)
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