7. Air obeying ideal gas law undergoes change of state from P₁= 1.0135 x105 N/m² to 10.135 x 105 N/m² and V₁ = 10.16m3 to V2 = 1.0165m3 by following the reversible processes. i. Compression at constant temperature ii. Adiabatic compression followed by isobaric cooling. iii. Isochoric heating followed by isobaric cooling. Calculate ALL WOAH for each of the process.

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
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7. Air obeying ideal gas law undergoes change of state from P₁= 1.0135 x10³ N/m² to 10.135 x 105 N/m² and V₁ =
10.16m3 to V2 = 1.0165m3 by following the reversible processes.
i. Compression at constant temperature
ii. Adiabatic compression followed by isobaric cooling.
iii. Isochoric heating followed by isobaric cooling.
Calculate AU, W. Q, AH for each of the process.
Transcribed Image Text:7. Air obeying ideal gas law undergoes change of state from P₁= 1.0135 x10³ N/m² to 10.135 x 105 N/m² and V₁ = 10.16m3 to V2 = 1.0165m3 by following the reversible processes. i. Compression at constant temperature ii. Adiabatic compression followed by isobaric cooling. iii. Isochoric heating followed by isobaric cooling. Calculate AU, W. Q, AH for each of the process.
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