How much work is done by the gas in path 2 to 3? O 159 J O 10,542 J 4,549 J 7.832 1

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter19: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 16P: (a) Determine the work done on a gas that expands from i to f as indicated in Figure P19.16. (b)...
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The photo that has the triangle has information needed to answer the question. The other photo contains the question. The question is how much work is being done by the gas in path 2 to 3
How much work is done by the gas in path 2 to 3?
159 J
10,542 J
4,549 J
7,832 J
Transcribed Image Text:How much work is done by the gas in path 2 to 3? 159 J 10,542 J 4,549 J 7,832 J
4
A heat engine has 3.0 moles of an ideal monatomic gas as its working substance. Its cycle progresses through three
thermodynamic processes that bring the gas back to its initial state. State 1 to state 2 is an isochoric process in which
pressure increases. State 2 to state 3 is an isothermal expansion that happens at 450 K, and state 3 back to 1 is an
isobaric compression. The temperature at state 1 is 300 K and the volume at state 1 is 0.02 m³.
0.02
3
✓(m²)
Transcribed Image Text:4 A heat engine has 3.0 moles of an ideal monatomic gas as its working substance. Its cycle progresses through three thermodynamic processes that bring the gas back to its initial state. State 1 to state 2 is an isochoric process in which pressure increases. State 2 to state 3 is an isothermal expansion that happens at 450 K, and state 3 back to 1 is an isobaric compression. The temperature at state 1 is 300 K and the volume at state 1 is 0.02 m³. 0.02 3 ✓(m²)
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Thanks so much can you help with this as well

 

How much heat goes into the gas from 3 to 1?

 

a)-5,609 J

b)-9,349 J

c)-10,592 J

d)8,970 J

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