1 moles of a diatomic ideal gas undergoes a cyclic process as depicted in the figure below. The processes AB and CD are isobaric and the process DA is adiabatic. For the given values PA = 12.5 atm, VA= 5.8 L, V8=2.9 L, Pc= 25 atm, and Vc=1.768 L answer the following questions. (use R=8.314 J 1 atm = 1.013x 105 Pa, 1 L= 10-3 m³) mol · K Volume 1. Calculate the temperature 1 A K %3D 2. What type of process is the process BC? 3. Calculate the work done by the gas in the process DA.WDA= 4. Calculate the magnitude of the net heat entering the cycle. QH = 5. Calculate the magnitude of the net heat leaving the cycle. Qc =| J 6. Calculate the net work done by the gas. 2W= 7. Calculate the thermal efficiency of the cycle. e = % 8. Calculate the change in the entropy in the process AB. Include the sign (positive or negative) in your answer as well. J AS %3D AB K

Elements Of Electromagnetics
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diatomic ideal gas undergoes a cyclic process

1 moles of a diatomic ideal gas undergoes a cyclic process as depicted in the figure below. The processes AB and CD are isobaric
and the process DA is adiabatic. For the given values
PA= 12.5 atm, V= 5.8 L, VB=2.9 L, Pc= 25 atm, and Vc=1.768 L answer the following questions.
J
(use R=8.314
1 atm = 1.013x 105 Pa, 1 L = 10-3 m³) .
mol · K
Volume
1. Calculate the temperature A=
K
2. What type of process is the process BC?
3. Calculate the work done by the gas in the process DA.W DA
4. Calculate the magnitude of the net heat entering the cycle. QH =
5. Calculate the magnitude of the net heat leaving the cycle. Qc =
6. Calculate the net work done by the gas. EW=
7. Calculate the thermal efficiency of the cycle. e =
%
8. Calculate the change in the entropy in the process AB. Include the sign (positive or negative) in your answer as well.
AS AB =
K
Transcribed Image Text:1 moles of a diatomic ideal gas undergoes a cyclic process as depicted in the figure below. The processes AB and CD are isobaric and the process DA is adiabatic. For the given values PA= 12.5 atm, V= 5.8 L, VB=2.9 L, Pc= 25 atm, and Vc=1.768 L answer the following questions. J (use R=8.314 1 atm = 1.013x 105 Pa, 1 L = 10-3 m³) . mol · K Volume 1. Calculate the temperature A= K 2. What type of process is the process BC? 3. Calculate the work done by the gas in the process DA.W DA 4. Calculate the magnitude of the net heat entering the cycle. QH = 5. Calculate the magnitude of the net heat leaving the cycle. Qc = 6. Calculate the net work done by the gas. EW= 7. Calculate the thermal efficiency of the cycle. e = % 8. Calculate the change in the entropy in the process AB. Include the sign (positive or negative) in your answer as well. AS AB = K
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