The Nitrogen gas is in a container of 0.45 L ', it is compressed adiabatically, up to a final volume of 10000 cm³, with a P2=13 Atm. For 10 moles of Nitrogen, knowing that the compression equation is PV = 530.54 Determine a) The work done {BTU) b) The increase in enthalpy {BTU) c) The increase in internal energy. (J)

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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The Nitrogen gas is in a container of 0.45 L', it is compressed adiabatically, up to a final
volume of 10000 cm³, with a P2=13 Atm.
For 10 moles of Nitrogen, knowing that the compression equation is PV* = 530.54
Determine
a) The work done {BTU)
b) The increase in enthalpy {BTU)
c) The increase in internal energy. (J)
Transcribed Image Text:The Nitrogen gas is in a container of 0.45 L', it is compressed adiabatically, up to a final volume of 10000 cm³, with a P2=13 Atm. For 10 moles of Nitrogen, knowing that the compression equation is PV* = 530.54 Determine a) The work done {BTU) b) The increase in enthalpy {BTU) c) The increase in internal energy. (J)
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