Universal gas constant= 8.314 J/mol.K 2 moles of mono-atomic ideal gas initially held at state A with volume of 2 m and pressure 200 N/m2. Then the gas goes through following processes. A to B, B to C, and C to A a)lts pressure and volume increases linearly to 400 N/m2 and 4 m3 (A to B) b) Pressure decreases to 200 N/m2 at constant volume.(B to C) c) Volume decreases to 2 mo at constant pressure such that the gas returns to original state (C to A) Indicate those processes in a PV diagram. Determine the work done by the gas during each process and total work done by the gas during one cycle. How much heat absorbed by the gas during the process of A to B

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter17: Energy In Thermal Processes: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 68P: A sample of a monatomic ideal gas occupies 5.00 L at atmospheric pressure and 300 K (point A in Fig....
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Universal gas constant= 8.314 J/mol.K
2 moles of mono-atomic ideal gas initially held at state A with volume of 2 m and pressure
200 N/m2. Then the gas goes through following processes. A to B, B to C, and C to A
a)lts pressure and volume increases linearly to 400 N/m2 and 4 m3 (A to B)
b) Pressure decreases to 200 N/m2 at constant volume.(B to C)
c) Volume decreases to 2 mo at constant pressure such that the gas returns to original
state (C to A)
Indicate those processes in a PV diagram. Determine the work done by the gas during
each process and total work done by the gas during one cycle. How much heat absorbed
by the gas during the process of A to B
Transcribed Image Text:Universal gas constant= 8.314 J/mol.K 2 moles of mono-atomic ideal gas initially held at state A with volume of 2 m and pressure 200 N/m2. Then the gas goes through following processes. A to B, B to C, and C to A a)lts pressure and volume increases linearly to 400 N/m2 and 4 m3 (A to B) b) Pressure decreases to 200 N/m2 at constant volume.(B to C) c) Volume decreases to 2 mo at constant pressure such that the gas returns to original state (C to A) Indicate those processes in a PV diagram. Determine the work done by the gas during each process and total work done by the gas during one cycle. How much heat absorbed by the gas during the process of A to B
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