Heat Engine Practice Problem Problem Statement A piston-cylinder heat engine containing a monatomic ideal gas undergoes the three processes drawn on the p-V diagram below. The gas is initially at room temperature (300 K). What is the total work done by the gas and what is the total heat flow into the gas after completing one cycle? Visual Representation • Draw the pV diagram of the cycle (if not already given). p (Pa) 3000 2000 1000 V (m') Mathematical Representation • Determine p, V and T at the beginning and end of each process. • Calculate Q, Wby, and AEthem for each process. • Verify that (AEtherm)net=0. • Calculate desired quantities. 3. en

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Heat Engine Practice Problem
Problem Statement
A piston-cylinder heat engine containing a monatomic ideal gas undergoes the three processes drawn on
the p-V diagram below. The gas is initially at room temperature (300 K). What is the total work done by
the gas and what is the total heat flow into the gas after completing one cycle?
Visual Representation
• Draw the pV diagram of the cycle (if not already given).
p (Pa)
3000
2000
1000
V (m')
Mathematical Representation
• Determine p, V and T at the beginning and end of each process.
• Calculate Q, Wby, and AEthem for each process.
• Verify that (AEtherm)net=0.
• Calculate desired quantities.
3.
en
Transcribed Image Text:Heat Engine Practice Problem Problem Statement A piston-cylinder heat engine containing a monatomic ideal gas undergoes the three processes drawn on the p-V diagram below. The gas is initially at room temperature (300 K). What is the total work done by the gas and what is the total heat flow into the gas after completing one cycle? Visual Representation • Draw the pV diagram of the cycle (if not already given). p (Pa) 3000 2000 1000 V (m') Mathematical Representation • Determine p, V and T at the beginning and end of each process. • Calculate Q, Wby, and AEthem for each process. • Verify that (AEtherm)net=0. • Calculate desired quantities. 3. en
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