1 kg of gas occupying 0.19 m’ at a pressure of 15 bar is heated at constant pressure until its volume is 0.35 m². The gas is then expanded adiabatically until its volume is 2 m³ . Calculate: 1- Temperature at the end of constant pressure heating and the end of adiabatic expansion. Take Cp = 1.068 kJ/kg.K and Cv=0.775 kJ/kg.K . 2- Total work done.

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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1 kg of gas occupying 0.19 m² at a pressure of 15 bar is heated at constant
pressure until its volume is 0.35 m’. The gas is then expanded adiabatically until
its volume is 2 m³ . Calculate: 1- Temperature at the end of constant pressure
heating and the end of adiabatic expansion.
Take Cp = 1.068 kJ/kg.K and Cv=0.775 kJ/kg.K .
2- Total work done.
Transcribed Image Text:1 kg of gas occupying 0.19 m² at a pressure of 15 bar is heated at constant pressure until its volume is 0.35 m’. The gas is then expanded adiabatically until its volume is 2 m³ . Calculate: 1- Temperature at the end of constant pressure heating and the end of adiabatic expansion. Take Cp = 1.068 kJ/kg.K and Cv=0.775 kJ/kg.K . 2- Total work done.
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