Figure 2 showed an ideal gas is slowly compressed at a constant pressure of 2.0 atm from 10 L to 2.0 L. (Heat flows out and the temperature drops). Heat is then added to the gas holding the volume constant, pressure and temperature are allowed to rise until the temperature reaches its original value. Calculate the total heat flow out when the temperature reaches its original value and the temperature at C if n = 0.5.

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter11: Fluid Statics
Section: Chapter Questions
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Figure 2 showed an ideal gas is slowly compressed at a constant pressure of 2.0 atm from 10 L to 2.0 L. (Heat flows out and the temperature drops). Heat is then added to the gas holding the volume constant, pressure and temperature are allowed to rise until the temperature reaches its original value.
Calculate the
total heat flow out when the temperature reaches its original value
and the temperature at C if n = 0.5.

A
Figure 2
D
2
2.0
10.0
Volume/L
Pressure /atm
Transcribed Image Text:A Figure 2 D 2 2.0 10.0 Volume/L Pressure /atm
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