Thermodynamics - Entropy and Temperature

AI Thread Summary
In the described thermodynamic cycle, when the gas expands into the piston chamber, its entropy increases due to the increase in volume and the associated heat flow. During this expansion, the temperature of the gas decreases as it does work on the piston. Conversely, when the gas is compressed back into the original chamber, the volume decreases, leading to a decrease in entropy while the temperature rises due to the work done on the gas. The analysis requires applying the first law of thermodynamics and understanding the relationship between heat, work, and internal energy changes. Clarifying these concepts will help accurately determine the entropy changes throughout the process.
lifeonfire
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Homework Statement


A gas fills a closed chamber connected to an evacuated piston chamber via a valve. The apparatus is diathermal (heat can flow through the walls of the chamber). The valve is opened to vent the gas into the piston. The piston then slowly compresses the gas back into the original chamber. Explain what is happening to the entropy during the cycle.


Homework Equations


S = Q/T; PV = nRT; ΔU = ΔQ - ΔW


The Attempt at a Solution


Step 1: Gas comes out from the chamber into the piston chamber. It expands in volume. So the entropy increases? And the temperature of the gas will drop?

Step 2: When gas is compressed, volume decreases and so entropy decreases and temperature will increase??

Help! i don't think I am doing it correctly...
 
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lifeonfire said:
Step 1: Gas comes out from the chamber into the piston chamber. It expands in volume. So the entropy increases? And the temperature of the gas will drop?

Step 2: When gas is compressed, volume decreases and so entropy decreases and temperature will increase??
Apply the definition of entropy:

\Delta S = \int \frac{dQ_{rev}}{T}

Compare the initial and final states of each step by applying the first law. Determine the reversible path between the two states. Write the expression for dQ_rev/T and integrate.

In the first step, is there any work done? Is there any heat flow? If not, what can you say about the change in internal energy? What does that say about the change in temperature?
Answer those questions first.

AM
 
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