One mole of an ideal monatomic gas goes through the reversible cycle shown. Vc = .0.0140 m³, Vab = 0.0060 m³, pb = 8.00 atm, and y = 5/3. Find the net heat flow into the gas during a complete cycle. Qnet 3137.3x1,560 J What is the efficiency of this cycle? eff=0.248 x 0.284 Hint: The total amount of work done per cycle is equal to the net amount of heat taken in during a full cycle. The efficiency is the work done divided by the amount of heat taken in.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The correct answers are 1,560 J and 0.284

 

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One mole of an ideal monatomic gas goes through the reversible cycle shown. Vc = .0.0140 m³,
Vab = 0.0060 m³, pb = 8.00 atm, and y = 5/3. Find the net heat flow into the gas during a complete
cycle.
net 3137.3 x 1,560 J
What is the efficiency of this cycle?
eff=0.248
x 0.284
Hint: The total amount of work done per cycle is equal to the net amount of heat taken in during a full
cycle. The efficiency is the work done divided by the amount of heat taken in.
Pb
b
pressure
Pac
12
a
adiabatic
Vab
volume
V₁
C
Transcribed Image Text:One mole of an ideal monatomic gas goes through the reversible cycle shown. Vc = .0.0140 m³, Vab = 0.0060 m³, pb = 8.00 atm, and y = 5/3. Find the net heat flow into the gas during a complete cycle. net 3137.3 x 1,560 J What is the efficiency of this cycle? eff=0.248 x 0.284 Hint: The total amount of work done per cycle is equal to the net amount of heat taken in during a full cycle. The efficiency is the work done divided by the amount of heat taken in. Pb b pressure Pac 12 a adiabatic Vab volume V₁ C
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