In (Figure 1), consider the closed loop 1234-1. This is a cyclic process in which the initial and final states are the same. Use values po = 5.0 atm and Vo = 0, 10 L Part A Find the total work done by the system this process, and show that it is equal to the area enclosed by the loop. Express your answer in joules. ν ΑΣφ ? W = J Submit Previous Answers Request Answer X Incorrect; Try Again Part B Figure < 1 of 1> How is the work done during the process in Part A related to the work done if the loop is traversed in the opposite direction, 143-2-1? Express your answer in joules. ? W = Submit Request Answer Po Vo

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In (Figure 1), consider the closed loop 12-341. This is a
cyclic process in which the initial and final states are the same, Use
values po = 5.0 atm and Vo = 0.10 L
Part A
Find the total work done by the system in this process, and show that it is equal to the area enclosed by the loop.
Express your answer in joules.
?
W =
J
Submit
Previous Answers Request Answer
X Incorrect; Try Again
Part B
Figure
1 of 1
How is the work done during the process in Part A related to the work done if the loop is traversed in the opposite direction, 1432 1?
Express your answer in joules.
W =
J
Submit
Request Answer
Po
V
Vo
Transcribed Image Text:In (Figure 1), consider the closed loop 12-341. This is a cyclic process in which the initial and final states are the same, Use values po = 5.0 atm and Vo = 0.10 L Part A Find the total work done by the system in this process, and show that it is equal to the area enclosed by the loop. Express your answer in joules. ? W = J Submit Previous Answers Request Answer X Incorrect; Try Again Part B Figure 1 of 1 How is the work done during the process in Part A related to the work done if the loop is traversed in the opposite direction, 1432 1? Express your answer in joules. W = J Submit Request Answer Po V Vo
Part D
How much work is done in the cycle 3-4 23?
Express your answer in joules.
?
W =
J
Transcribed Image Text:Part D How much work is done in the cycle 3-4 23? Express your answer in joules. ? W = J
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