A sample of ideal gas follows the cyclical process shown in the figure. From A to B,the process is adiabatic; from B to C is isobaric, with 100 kJ of heat entering the system; from C to D, the process is isothermal; from D to A, it is isobaric, with 150 kJ of heat leaving the system. P(atm) 3.0 1.0 B A 0,090 0.20 C 0.40 21 1.2 V(m³) Determine the ideal gas type of the machine (calculate y=CP/CV using the values of the adiabatic process, and compare with the values expected for different types of gases ideals discussed in class).
A sample of ideal gas follows the cyclical process shown in the figure. From A to B,the process is adiabatic; from B to C is isobaric, with 100 kJ of heat entering the system; from C to D, the process is isothermal; from D to A, it is isobaric, with 150 kJ of heat leaving the system. P(atm) 3.0 1.0 B A 0,090 0.20 C 0.40 21 1.2 V(m³) Determine the ideal gas type of the machine (calculate y=CP/CV using the values of the adiabatic process, and compare with the values expected for different types of gases ideals discussed in class).
College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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![A sample of ideal gas follows the cyclical process shown in the figure. From
A to B,the process is adiabatic; from B to C is isobaric, with 100 kJ of heat
entering the system; from C to D, the process is isothermal; from D to A, it
is isobaric, with 150 kJ of heat leaving the system.
P(atm)
3.0
B
1.0-----
C
0.090 0.20 0.40
21
D
1.2
V(m³)
Determine the ideal gas type of the machine
(calculate y=CP/CV using the values of the
adiabatic process, and compare with the values
expected for different types of gases
ideals discussed in class).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6d583ce0-6f9d-4282-8c13-4385d96f2c37%2F6aa8917b-13fc-4d2e-a626-00b803629b64%2Ft6mey45_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A sample of ideal gas follows the cyclical process shown in the figure. From
A to B,the process is adiabatic; from B to C is isobaric, with 100 kJ of heat
entering the system; from C to D, the process is isothermal; from D to A, it
is isobaric, with 150 kJ of heat leaving the system.
P(atm)
3.0
B
1.0-----
C
0.090 0.20 0.40
21
D
1.2
V(m³)
Determine the ideal gas type of the machine
(calculate y=CP/CV using the values of the
adiabatic process, and compare with the values
expected for different types of gases
ideals discussed in class).
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