The following system consisting of an ideal gas contained in a cylinder with a frictionless piston is taken around the closed path a - b -> c> a as shown in the figure below, where the process ca is isothermal. During the closed cycle the system expels 200J of heat to its surroundings. P a A) If the work done on the system during the isobaric leg b -> c of the cycle is 300J, what is the heat expelled/absorbed by the gas in the isothermal leg c -> a? Don't forget to make it clear whether heat is expelled or absorbed by the system! B) If the heat expelled by the system during the isobaric leg b -> c of the cycle is 400J, what is the change in internal energy AU during the process a -> b?

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Chapter1: Units, Trigonometry. And Vectors
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The following system consisting of an ideal gas
contained in a cylinder with a frictionless piston
is taken around the closed path a -> b -> c -> a
as shown in the figure below, where the process
ca is isothermal. During the closed cycle the
system expels 200J of heat to its surroundings.
PA
a
A) If the work done on the system during the
isobaric leg b -> c of the cycle is 300J, what is
the heat expelled/absorbed by the gas in the
isothermal leg c -> a?
Don't forget to make it clear whether heat is
expelled or absorbed by the system!
B) If the heat expelled by the system during the
isobaric leg b -> c of the cycle is 400J, what is
the change in internal energy AU during the
process a -> b?
Transcribed Image Text:The following system consisting of an ideal gas contained in a cylinder with a frictionless piston is taken around the closed path a -> b -> c -> a as shown in the figure below, where the process ca is isothermal. During the closed cycle the system expels 200J of heat to its surroundings. PA a A) If the work done on the system during the isobaric leg b -> c of the cycle is 300J, what is the heat expelled/absorbed by the gas in the isothermal leg c -> a? Don't forget to make it clear whether heat is expelled or absorbed by the system! B) If the heat expelled by the system during the isobaric leg b -> c of the cycle is 400J, what is the change in internal energy AU during the process a -> b?
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