Q4.. The figure below shows a diatomic ideal gas sample in a closed system undergoes a cycle process ABCA such that AB is adiabatic and BC is isochoric. 1.85×105 P/Pa A 1.55×105 B C Tc (500+103) K 0 V/m³ 5 20 Find the followings: (a) (i) (ii) number of mole n of the gas sample, temperature TA. Find the works by the system WBC and WCA along paths BC and CA. (b) (c) Find the gas pressure at state B. (d) Find the internal energy when the system is at A and B respectively. (e) Find the work WAB and the change of entropy ASAB along the path AB (f) Find the total work done by the system WABCA, the total change of internal energy AEint, ABCA, the total heat absorbed by the system QABCA, and the total change of entropy ASABCA along the path ABCA. (12 marks)

Elements Of Electromagnetics
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Q4..
The figure below shows a diatomic ideal gas sample in a closed system undergoes
a cycle process ABCA such that AB is adiabatic and BC is isochoric.
1.85×105
P/Pa
A
1.55×105
B
C
Tc (500+103) K
0
V/m³
5
20
Find the followings:
(a)
(i)
(ii)
number of mole n of the gas sample,
temperature TA.
Find the works by the system WBC and WCA along paths BC and CA.
(b)
(c)
Find the gas pressure at state B.
(d)
Find the internal energy when the system is at A and B respectively.
(e)
Find the work WAB and the change of entropy ASAB along the path AB
(f)
Find the total work done by the system WABCA, the total change of internal energy AEint, ABCA,
the total heat absorbed by the system QABCA, and the total change of entropy ASABCA along
the path ABCA.
(12 marks)
Transcribed Image Text:Q4.. The figure below shows a diatomic ideal gas sample in a closed system undergoes a cycle process ABCA such that AB is adiabatic and BC is isochoric. 1.85×105 P/Pa A 1.55×105 B C Tc (500+103) K 0 V/m³ 5 20 Find the followings: (a) (i) (ii) number of mole n of the gas sample, temperature TA. Find the works by the system WBC and WCA along paths BC and CA. (b) (c) Find the gas pressure at state B. (d) Find the internal energy when the system is at A and B respectively. (e) Find the work WAB and the change of entropy ASAB along the path AB (f) Find the total work done by the system WABCA, the total change of internal energy AEint, ABCA, the total heat absorbed by the system QABCA, and the total change of entropy ASABCA along the path ABCA. (12 marks)
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