P2 657°C Isothermal 2.0 37°C atm V(L) V3 The figure (not to scale) shows a pV diagram for 9.6 g of helium gas (He) that undergoes the process 1→ 2 → 3→1. The ideal gas constant is R = 8.314 J/mol K = 0.0821 L· atm/mol · K, and the atomic weight of helium is 4.0 g/mol. %3D What is the net work done by the gas in Joules? Please give your numerical answer with one decimal place.

University Physics Volume 2
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ISBN:9781938168161
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Chapter3: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 35P: Two monatomic ideal gases A and B are at the same temperature. If 1.0 g of gas A has the same...
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P2
657°C
Isothermal
2.0
atm
37°C
0+
V(L)
V3
The figure (not to scale) shows a pV diagram for 9.6 g of helium gas (He) that
undergoes the process 1→ 2 → 3→1. The ideal gas constant is R = 8.314 J/mol .
K = 0.0821 L· atm/mol · K, and the atomic weight of helium is 4.0 g/mol.
%3D
What is the net work done by the gas in Joules?
Please give your numerical answer with one decimal place.
Transcribed Image Text:P2 657°C Isothermal 2.0 atm 37°C 0+ V(L) V3 The figure (not to scale) shows a pV diagram for 9.6 g of helium gas (He) that undergoes the process 1→ 2 → 3→1. The ideal gas constant is R = 8.314 J/mol . K = 0.0821 L· atm/mol · K, and the atomic weight of helium is 4.0 g/mol. %3D What is the net work done by the gas in Joules? Please give your numerical answer with one decimal place.
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