Thermodynamics VA C B A 1 mole of Helium (a monatomic ideal gas) is taken through a cyclic path consisting of three thermodynamic processes. The gas starts at point A with a pressure of pA = 1 atm, a volume of VA = 2 L, and a temperature of TA = 24.4 K. The gas is then compressed isothermally (constant temperature) to point B, where the pressure is doubled. It then undergoes an isobaric (constant pressure) expansion to point C, back to its original volume VA. The gas next undergoes an isochoric (constant volume) process back to the original point A. %3D

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6.-What is the volume at point B? Enter the numerical value in units of L.
Thermodynamics
VA
C
B
A
1 mole of Helium (a monatomic ideal gas) is taken through a cyclic path consisting
of three thermodynamic processes. The gas starts at point A with a pressure of PA =
1 atm, a volume of VA= 2 L, and a temperature of TA = 24.4 K. The gas is then
compressed isothermally (constant temperature) to point B, where the pressure is
doubled. It then undergoes an isobaric (constant pressure) expansion to point C,
back to its original volume VA. The gas next undergoes an isochoric (constant
volume) process back to the original point A.
%3D
Transcribed Image Text:Thermodynamics VA C B A 1 mole of Helium (a monatomic ideal gas) is taken through a cyclic path consisting of three thermodynamic processes. The gas starts at point A with a pressure of PA = 1 atm, a volume of VA= 2 L, and a temperature of TA = 24.4 K. The gas is then compressed isothermally (constant temperature) to point B, where the pressure is doubled. It then undergoes an isobaric (constant pressure) expansion to point C, back to its original volume VA. The gas next undergoes an isochoric (constant volume) process back to the original point A. %3D
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