QI/ Air is compressed from an initial state of 1 bar, 25 oC and the volume of air is 0.0247 m3/kg to a final state of 5 bar , 25 oC and the volume of air is 0.00495 m3/kg. By two

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
Chapter1: Introduction
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QI/ Air is compressed from an initial state of 1 bar, 25 oC
and the volume of air is 0.0247 m3/kg to a final state of 5
bar , 25 oC and the volume of air is 0.00495 m3/kg. By two
different mechanically reversible processes in a closed
system, as the following heating at constant volume
followed by cooling at constant pressure. Assume air to be
an ideal gas with the constant heat capacity, CV= 0.717
kJ/kgK , Cp= 1.005 kJ/kgK, R=0.287 kJ/kgK and y=1.4.
Calculate the work required, heat transferred, and the
changes in internal energy and enthalpy of air each process
and for the entire cycle?
Transcribed Image Text:QI/ Air is compressed from an initial state of 1 bar, 25 oC and the volume of air is 0.0247 m3/kg to a final state of 5 bar , 25 oC and the volume of air is 0.00495 m3/kg. By two different mechanically reversible processes in a closed system, as the following heating at constant volume followed by cooling at constant pressure. Assume air to be an ideal gas with the constant heat capacity, CV= 0.717 kJ/kgK , Cp= 1.005 kJ/kgK, R=0.287 kJ/kgK and y=1.4. Calculate the work required, heat transferred, and the changes in internal energy and enthalpy of air each process and for the entire cycle?
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