3. Two kg of helium operates on a three-process cycle where the processes are constant volume (1-2); constant pressure (2-3); and constant temperature (3-1). Given that P₁ = 100 kPa, T₁= 300 K and P2/P1 = 5, determine (a) the pressure, and temperature around the cycle; (b) the work for each process; (c) the heat added. Draw the cycle on diagrams below: P T V S
3. Two kg of helium operates on a three-process cycle where the processes are constant volume (1-2); constant pressure (2-3); and constant temperature (3-1). Given that P₁ = 100 kPa, T₁= 300 K and P2/P1 = 5, determine (a) the pressure, and temperature around the cycle; (b) the work for each process; (c) the heat added. Draw the cycle on diagrams below: P T V S
Chapter3: The First Law Of Thermodynamics
Section: Chapter Questions
Problem 17CQ: There is no change in the internal of an ideal gas undergoing an isothermal process since the...
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![3. Two kg of helium operates on a three-process cycle
where the processes are constant volume (1-2); constant
pressure (2-3); and constant temperature (3-1). Given that P₁ =
100 kPa, T₁= 300 K and P2/P1 = 5, determine (a) the pressure,
and temperature around the cycle; (b) the work
for each process; (c) the heat added.
Draw the cycle on diagrams below:
P
T
V
S
3.a.1
3.a.2
3.a.3
3.a.4
3.b.1
3.b.2
3.b.3 W3-1
3.c.1
Q1-2
3.c.2
Q2-3
3.c.3 Q3-1
5.a
P2 =
T2=
P3=
T3=
W1-2
W2-3](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F78faef1f-af7d-4b18-8cfd-2dead0a982c5%2Fa2ac2b66-c1bc-4091-8e37-463488cfa475%2Fpw4z9l9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. Two kg of helium operates on a three-process cycle
where the processes are constant volume (1-2); constant
pressure (2-3); and constant temperature (3-1). Given that P₁ =
100 kPa, T₁= 300 K and P2/P1 = 5, determine (a) the pressure,
and temperature around the cycle; (b) the work
for each process; (c) the heat added.
Draw the cycle on diagrams below:
P
T
V
S
3.a.1
3.a.2
3.a.3
3.a.4
3.b.1
3.b.2
3.b.3 W3-1
3.c.1
Q1-2
3.c.2
Q2-3
3.c.3 Q3-1
5.a
P2 =
T2=
P3=
T3=
W1-2
W2-3
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