1 moles of a monatomic 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. Fo the given values pA= 11.8 atm, V,= 6.4 L, V3=2.133 L, Pc=23.6 atm, and V.=1.409 L answer the following questions. (use R=8.314 J 1 atm = 1.013x105 Pa, 1 L = 10¬3 m³) mol · K Volume

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Chapter4: Energy And Chemical Reactions
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1 moles of a monatomic 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 p.= 11.8 atm, V= 6.4 L, VR=2.133 L, pc= 23.6 atm, and Vc=1.409 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 T= 920.4
2. What type of process is the process BC? isothermal +
3. Calculate the work done by the gas in the process DA.WDA =
XJ
4. Calculate the magnitude of the net heat entering the cycle. QH =
XJ
5. Calculate the magnitude of the net heat leaving the cycle. Q =
XJ
6. Calculate the net work done by the gas. 2W=
XJ
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. ASAR =
Transcribed Image Text:1 moles of a monatomic 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 p.= 11.8 atm, V= 6.4 L, VR=2.133 L, pc= 23.6 atm, and Vc=1.409 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 T= 920.4 2. What type of process is the process BC? isothermal + 3. Calculate the work done by the gas in the process DA.WDA = XJ 4. Calculate the magnitude of the net heat entering the cycle. QH = XJ 5. Calculate the magnitude of the net heat leaving the cycle. Q = XJ 6. Calculate the net work done by the gas. 2W= XJ 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. ASAR =
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