In the PV diagram shown in Figure B1, an ideal monatomic gas undergoes isothermal expansion from state W to state X, followed by cooling at constant volume to state Y. The gas then undergoes isobaric compression to state Z before it is heated until it returns to state W. P Vw = Vz=2 liters Pw = 10 atm Vx = Vy = 4 liters Tw = 327°C X Pz = 2 atm Y V Figure B1 (i) What is the internal energy of the gas at point X? [answer in SI unit joule] (ii) What is the pressure of the gas (in unit atm) when it is in state X?
In the PV diagram shown in Figure B1, an ideal monatomic gas undergoes isothermal expansion from state W to state X, followed by cooling at constant volume to state Y. The gas then undergoes isobaric compression to state Z before it is heated until it returns to state W. P Vw = Vz=2 liters Pw = 10 atm Vx = Vy = 4 liters Tw = 327°C X Pz = 2 atm Y V Figure B1 (i) What is the internal energy of the gas at point X? [answer in SI unit joule] (ii) What is the pressure of the gas (in unit atm) when it is in state X?
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![In the PV diagram shown in Figure B1, an ideal monatomic gas undergoes
isothermal expansion from state W to state X, followed by cooling at constant
volume to state Y. The gas then undergoes isobaric compression to state Z before
it is heated until it returns to state W.
P
Vw = Vz =2 liters
Pw = 10 atm
Vx= Vy = 4 liters
Tw = 327°C
X
Pz = 2 atm
Y
V
Figure B1
(i)
What is the internal energy of the gas at point X? [answer in SI unit joule]
(ii)
What is the pressure of the gas (in unit atm) when it is in state X?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F196d78af-2341-448f-b21b-69f69611e8b0%2F6934b68f-92a6-4a54-9ee0-54e81dbf2287%2Fifp2amg_processed.png&w=3840&q=75)
Transcribed Image Text:In the PV diagram shown in Figure B1, an ideal monatomic gas undergoes
isothermal expansion from state W to state X, followed by cooling at constant
volume to state Y. The gas then undergoes isobaric compression to state Z before
it is heated until it returns to state W.
P
Vw = Vz =2 liters
Pw = 10 atm
Vx= Vy = 4 liters
Tw = 327°C
X
Pz = 2 atm
Y
V
Figure B1
(i)
What is the internal energy of the gas at point X? [answer in SI unit joule]
(ii)
What is the pressure of the gas (in unit atm) when it is in state X?
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