When of ideal gas expands isothermally into a vacuum to a total volume of , the change in internal energy is _____ J. (Nearest integer)
JEE Chemistry 2023 Question with Solution
Answer
Correct answer:0
Step-by-step solution
Standard Method
Given: Initial volume is and the gas expands isothermally into vacuum to a final volume of .
Find: Change in internal energy, .
For an ideal gas undergoing an isothermal process, internal energy depends only on temperature:
Since the process is isothermal, the temperature remains constant. Therefore,
Hence, the change in internal energy is . The numerical answer is 0.
Concept from Thermodynamics
Given: The gas is ideal and the expansion is isothermal.
Find: Whether volume change affects .
For an ideal gas, internal energy is a function only of temperature, not of volume. Even though the gas expands from to , the temperature does not change in an isothermal process.
Therefore,
So the required nearest integer is 0.
Common mistakes
Assuming that a change in volume must cause a change in internal energy. This is wrong for an ideal gas because internal energy depends only on temperature. Check whether the process changes , not just .
Using work done in free expansion to infer a nonzero directly. In this question, the key fact is isothermal ideal-gas behavior, so internal energy remains unchanged. Focus first on the state function dependence.
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