Q1/ Ideal gas is cooled at constant volume (2.23 m³/kmol) from an initial state of 4°C to final state of -245°C. Calculate the internal energy change (AU), Enthalpy change (AH), Heat "Q) and Work (W)? Given that Cv = (5/2) R

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Q1/ Ideal gas is cooled at constant volume (2.23 m³/kmol) from an initial state of 4°C to
final state of -245°C. Calculate the internal energy change (AU), Enthalpy change (AH), Heat
(Q) and Work (W)? Given that Cv = (5/2) R
Transcribed Image Text:Q1/ Ideal gas is cooled at constant volume (2.23 m³/kmol) from an initial state of 4°C to final state of -245°C. Calculate the internal energy change (AU), Enthalpy change (AH), Heat (Q) and Work (W)? Given that Cv = (5/2) R
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