I was told the gas constant R is "work done per mole per kelvin" — what does that actually mean physically?
Working through isothermal processes and the definition I was given for the universal gas constant was that it is the work done by a gas, per mole, per kelvin. I wrote it down and it has not meant anything to me since.
What I can do is use it. Plug it into the ideal gas law, get the right number. What I cannot do is picture what it is — whether it is a property of gases, a property of the universe, or just a units conversion that fell out of how we defined things.
Can someone give me the physical intuition rather than the formula?
@orbital_ola · 2w ago
The "work done per mole per kelvin" version you were given is not wrong, it is just a specific case presented as a definition, which is why it did not generalise for you.
Here is where it comes from. Heat a mole of ideal gas by one kelvin at constant pressure and it expands. Expanding against a constant pressure does work, and if you compute that work it comes out to exactly R joules.
So the statement is true, and it describes one particular situation — constant pressure, one mole, one kelvin. Your textbook picked it because it appears while deriving the difference between the two heat capacities.
But R shows up in places with no work and no expansion anywhere: entropy expressions, equilibrium constants, reaction rates, the distribution of molecular speeds. Those are the clue that the deeper meaning is the energy-per-kelvin one, and the work interpretation is a consequence rather than the definition.
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