Shown in the figure below is the cycle undergone by a Refrigerator. Your refrigerator runs using 36.99 moles of diatomic Nitrogen gas. At point a in the figure, the temperature is Ta = 290 Kelvin and the pressure is Pa = 236000 Pascals. During the process a→b, the Pressure of the system Doubles. P Determine all the following: Cv Cp = y = = STATE a b с PROCESS a→b b→c isothermal c→a Total P (Pa) Joules/(mole. K); Joules/(mole. K); W (J) Qhot = Qcold = Performance Coefficient = V (m³) Joules Joules Q (¹) b a T (K) V AU (J)

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Chapter22: Heat Engines, Entropy, And The Second Law Of Thermodynamics
Section: Chapter Questions
Problem 22.81CP: A 1.00-mol sample of an ideal gas ( = 1.40) is carried through the Carnot cycle described in Figure...
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Shown in the figure below is the cycle undergone by a Refrigerator. Your refrigerator runs using 36.99 moles of diatomic Nitrogen gas.
At point a in the figure, the temperature is Ta = 290 Kelvin and the pressure is Pa = 236000 Pascals. During the process a→b, the
Pressure of the system Doubles.
P
Determine all the following:
Cv
Cp =
y =
=
STATE
a
b
с
PROCESS
a→b
b→c
isothermal
c→a
Total
P (Pa)
Joules/(mole. K);
Joules/(mole. K);
W (J)
Qhot =
Qcold =
Performance Coefficient =
V (m³)
Joules
Joules
Q (¹)
b
a
T (K)
V
AU (J)
Transcribed Image Text:Shown in the figure below is the cycle undergone by a Refrigerator. Your refrigerator runs using 36.99 moles of diatomic Nitrogen gas. At point a in the figure, the temperature is Ta = 290 Kelvin and the pressure is Pa = 236000 Pascals. During the process a→b, the Pressure of the system Doubles. P Determine all the following: Cv Cp = y = = STATE a b с PROCESS a→b b→c isothermal c→a Total P (Pa) Joules/(mole. K); Joules/(mole. K); W (J) Qhot = Qcold = Performance Coefficient = V (m³) Joules Joules Q (¹) b a T (K) V AU (J)
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