Calculate the heat (q) and the work (w) in Joules, which the system exchanges with the return process in which the pressure is constant at 100 kPa. The initial temperature is 300 K and a final 500 K. The system contains 2 g of gas, which behaves in the state field the equation of an ideal gas and its molar heat capacity is cp, m = 43.0 J/g K. cv = 0.0346 J/g. K

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter12: Thermodynamic Processes And Thermochemistry
Section: Chapter Questions
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Calculate the heat (q) and the work (w) in Joules, which the system exchanges with the
return process in which the pressure is constant at 100 kPa. The initial temperature is
300 K and a final 500 K. The system contains 2 g of gas, which behaves in the state field
the equation of an ideal gas and its molar heat capacity is cp, m = 43.0 J/g K.
cv = 0.0346 J/g. K
Transcribed Image Text:Calculate the heat (q) and the work (w) in Joules, which the system exchanges with the return process in which the pressure is constant at 100 kPa. The initial temperature is 300 K and a final 500 K. The system contains 2 g of gas, which behaves in the state field the equation of an ideal gas and its molar heat capacity is cp, m = 43.0 J/g K. cv = 0.0346 J/g. K
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