Five moles of gas initially at a pressure of 2.00 atm and a volume of 0.300 L has internal energy equal to 91.0 J. In its final state, the gas is at a pressure of 1.50 atm and a volume of 0.800 L, and its internal energy equals 182 J. P (atm) 2.00- 1.50 V (liters) 0.300 0,800 (a) For the paths IAF, IBF, and IF in the figure above, calculate the work done on the gas. 75.99 The response you submitted has the wrong sign. J 101.325 W IBF WJAF= The response you submitted has the wrong sign. J 88.65 I The response vou submitted has the wrong sign 1

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter21: Heat And The First Law Of Thermodynamics
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Five moles of gas initially at a pressure of 2.00 atm and a volume of 0.300 L has internal energy equal to 91.0 J. In its final state, the gas is at a pressure of 1.50 atm and a volume of 0.800 L, and its internal
energy equals 182 J.
P (atm)
2.00 --
1.50
V (liters)
0.300
0.800
(a) For the paths IAF, IBF, and IF in the figure above, calculate the work done on the gas.
75,99
WIAF=
The response you submitted has the wrong sign. J
101.325
The response you submitted has the wrong sign. J
88.65
w,
VIBF
WIE
The response you submitted has the wrong sign. J
Transcribed Image Text:Five moles of gas initially at a pressure of 2.00 atm and a volume of 0.300 L has internal energy equal to 91.0 J. In its final state, the gas is at a pressure of 1.50 atm and a volume of 0.800 L, and its internal energy equals 182 J. P (atm) 2.00 -- 1.50 V (liters) 0.300 0.800 (a) For the paths IAF, IBF, and IF in the figure above, calculate the work done on the gas. 75,99 WIAF= The response you submitted has the wrong sign. J 101.325 The response you submitted has the wrong sign. J 88.65 w, VIBF WIE The response you submitted has the wrong sign. J
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