Two moles of a monatomic ideal gas are taken through a three process thermodynamic cycle. The gas starts with pressure PA= 16 atm and volume VA = 1 L. The gas is then expanded adiabatically to point B. The temperature at point B is Tg = 25 K. The gas is then compressed isobarically to point C where the volume is equal to VA. The gas is finally returned to state A via a constant volume process. For all calculations using the ideal gas law assume that L atm R = 0.08 For any calculations of work, heat, internal energy, or entropy use R = 8.0- molK molK a. Find all unknown temperatures, pressures, and volumes. Type all of your data into the table given. Show work on the next page A B P(atm) V(L) T(K) b. Draw a PV diagram for the thermodynamic cycle described C. Find the work done by the gas going from A to B d. Find the change in entropy of the gas going from C to A.

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Please helo me solve part a b c d
Two moles of a monatomic ideal gas are taken through a three process thermodynamic cycle. The gas starts with
pressure Pa= 16 atm and volume V = 1 L. The gas is then expanded adiabatically to point B. The temperature at
point B is Tg = 25 K. The gas is then compressed isobarically to point C where the volume is equal to V. The gas is
finally returned to state A via a constant volume process. For all calculations using the ideal gas law assume that
L atm
R = 0.08
For
molK
any calculations of work, heat, internal energy, or entropy use R = 8.0-
molK
Find all unknown temperatures, pressures, and volumes. Type all of your data into the table given. Show
work on the next page
a.
A
B
C
P(atm)
V(L)
T(K)
b. Draw a PV diagram for the thermodynamic cycle described
С.
Find the work done by the gas going from A to B
d. Find the change in entropy of the gas going from C to A.
Transcribed Image Text:Two moles of a monatomic ideal gas are taken through a three process thermodynamic cycle. The gas starts with pressure Pa= 16 atm and volume V = 1 L. The gas is then expanded adiabatically to point B. The temperature at point B is Tg = 25 K. The gas is then compressed isobarically to point C where the volume is equal to V. The gas is finally returned to state A via a constant volume process. For all calculations using the ideal gas law assume that L atm R = 0.08 For molK any calculations of work, heat, internal energy, or entropy use R = 8.0- molK Find all unknown temperatures, pressures, and volumes. Type all of your data into the table given. Show work on the next page a. A B C P(atm) V(L) T(K) b. Draw a PV diagram for the thermodynamic cycle described С. Find the work done by the gas going from A to B d. Find the change in entropy of the gas going from C to A.
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