(9) Calculate the net heat added to the gas for one entire cycle. 4250

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Consider the four-process cycle shown in the P-V diagram in the figure bełow. The graph shows a sequence of four processes being
carried out on a sealed system of ideal gas. In this case, Pis 50.0 kPa and V is 5.00 liters.
Pressure (kPa)
3p
2P
0+
ó v 2v 3V 4v
Volume (liters)
(a) Calculate the work done by the gas in the process taking the system from state 1 to state 2.
500
(b) Calculate the work done by the gas in the process taking the system from state 2 to state 3.
750
(c) Calculate the work done by the gas in the process taking the system from state 3 to state 4.
(d) Calculate the work done by the gas in the process taking the system from state 4 to state 1.
-750
(e) Calculate the net work done by the gas in one entire cycle.
500
(1) Calculate the net change in the internal energy of the gas for one entire cycde.
(9) Calculate the net heat added to the gas for one entire cycie.
4250
(h) Complete this sentence.
The temperature in state 3 is larger than the temperature in state 1 by a factor of 9
(1) Calcuiate the change in internal energy experienced by the gas during the process that takes the system from state 1 to
state 2. Assume that the ideal gas in this system is monatomic.
1875
(1) Calculate the heat added to the gas for the process that takes the system from state 1 to state 2. Assume that the ideal gas
In this system is monatomic.
2375
Transcribed Image Text:Consider the four-process cycle shown in the P-V diagram in the figure bełow. The graph shows a sequence of four processes being carried out on a sealed system of ideal gas. In this case, Pis 50.0 kPa and V is 5.00 liters. Pressure (kPa) 3p 2P 0+ ó v 2v 3V 4v Volume (liters) (a) Calculate the work done by the gas in the process taking the system from state 1 to state 2. 500 (b) Calculate the work done by the gas in the process taking the system from state 2 to state 3. 750 (c) Calculate the work done by the gas in the process taking the system from state 3 to state 4. (d) Calculate the work done by the gas in the process taking the system from state 4 to state 1. -750 (e) Calculate the net work done by the gas in one entire cycle. 500 (1) Calculate the net change in the internal energy of the gas for one entire cycde. (9) Calculate the net heat added to the gas for one entire cycie. 4250 (h) Complete this sentence. The temperature in state 3 is larger than the temperature in state 1 by a factor of 9 (1) Calcuiate the change in internal energy experienced by the gas during the process that takes the system from state 1 to state 2. Assume that the ideal gas in this system is monatomic. 1875 (1) Calculate the heat added to the gas for the process that takes the system from state 1 to state 2. Assume that the ideal gas In this system is monatomic. 2375
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