The PV diagram shows three moles of an ideal monatomic gas going through a cyclic process. The following information is given for the gas: Pa = Pd= 1.00 x 105 N/m2 ; Pb = Pc= 2.00 x 105 N/m² ; Va=Vb = 0.100 m³ ; Vc=Vd = 0.300 m³ ; %3! %3D Cp= (5/2) R; Cv= (3/2)R; R=8.31 J/mole K. Determine each of the following with three significant figures: a) The total heat absorbed during the cycle in kilo Joules. b) The total heat rejected during the cycle in kilo Joules. c) The work done by the gas during one cycle in kilo joules d) The total change in internal energy during the cycle

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The PV diagram shows three moles of an ideal monatomic gas going through a cyclic process. The following
information is given for the gas:
Pa = Pd= 1.00 x 105 N/m² ; Pb = Pc= 2.00 x 105 N/m² ; Va=Vb = 0.100 m³; Vc=Vd = 0.300 m3 ;
Cp= (5/2) R; Cv= (3/2)R; R=8.31 J/mole K.
Determine each of the following with three significant figures:
a) The total heat absorbed during the cycle
in kilo Joules.
b) The total heat rejected during the cycle
in kilo Joules.
c) The work done by the gas during one cycle in kilo joules
d) The total change in internal energy during the cycle
e) The efficiency of the cycle
f) The minimum temperature
of the gas in Kelvins during the cycle
g) The maximum temperature of the gas in Kelvins during the cycle
h) The efficiency
of a Carnot engine operating between the minimum and maximum
temperatures
i) The change in entropy
for the process a-b
étv N
MacBook Air
DII
DD
F3
F4
F5
F6
F7
F8
F9
%23
&
*
Transcribed Image Text:The PV diagram shows three moles of an ideal monatomic gas going through a cyclic process. The following information is given for the gas: Pa = Pd= 1.00 x 105 N/m² ; Pb = Pc= 2.00 x 105 N/m² ; Va=Vb = 0.100 m³; Vc=Vd = 0.300 m3 ; Cp= (5/2) R; Cv= (3/2)R; R=8.31 J/mole K. Determine each of the following with three significant figures: a) The total heat absorbed during the cycle in kilo Joules. b) The total heat rejected during the cycle in kilo Joules. c) The work done by the gas during one cycle in kilo joules d) The total change in internal energy during the cycle e) The efficiency of the cycle f) The minimum temperature of the gas in Kelvins during the cycle g) The maximum temperature of the gas in Kelvins during the cycle h) The efficiency of a Carnot engine operating between the minimum and maximum temperatures i) The change in entropy for the process a-b étv N MacBook Air DII DD F3 F4 F5 F6 F7 F8 F9 %23 & *
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