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【Daily Question No. 8】1/8/2018

2018-01-08View Original

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“When an ideal gas expands isothermally in contact with a single heat source, all the heat absorbed is used to do work on the surroundings. ”Regarding this claim, there are several discussions; which one is correct: ( ). (A) Does not violate the first law of thermodynamics, but violates the second law of thermodynamics. (B) Does not violate the second law of thermodynamics, but violates the first law of thermodynamics. (C) Does not violate neither the first law nor the second law of thermodynamics. (D) Violates both the first law and the second law of thermodynamics. C2018 Summary of Daily Questions for Licensed Electrical Engineers
Reply #22018-01-08
(C) It does not violate the first law of thermodynamics, nor does it violate the second law of thermodynamics
Reply #32018-01-08
(C) It does not violate the first law of thermodynamics, nor does it violate the second law of thermodynamics
Reply #42018-01-08
“When an ideal gas expands isothermally in contact with a single heat source, all the heat absorbed is used to do work on the surroundings. ”Regarding this claim, there are several discussions; which one is correct: (C). (A) Does not violate the first law of thermodynamics, but violates the second law of thermodynamics. (B) Does not violate the second law of thermodynamics, but violates the first law of thermodynamics. (C) Does not violate either the first law or the second law of thermodynamics. (D) Violates both the first law and the second law of thermodynamics
Reply #52018-01-08
(C) It does not violate the first law of thermodynamics, nor does it violate the second law of thermodynamics
Reply #62018-01-08
When an ideal gas expands isothermally in contact with a single heat source, all the heat absorbed is used to do work on the surroundings. ”Regarding this claim, there are several discussions; which one is correct: (B). (A) Does not violate the first law of thermodynamics, but violates the second law of thermodynamics. (B) Does not violate the second law of thermodynamics, but violates the first law of thermodynamics. (C) Does not violate either the first law or the second law of thermodynamics. (D) Violates both the first law and the second law of thermodynamics

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