epl_manutd said:
i'm very bad at thermodynamics and i need a few sol'ns before i get this topic. So if you can give me the solution, that would be great. I'm not doing this for homework or anything, just preparing for a contest
Okay, I'll tell you how to do it since this is a qualitative problem.
Both spheres expand when heated.
This is the key point: The center of mass of the ball on the floor rises, while the center of mass of the ball on the thread falls. Therefore, the potential energy of the floor ball increases, and the potential energy of the string ball decreases.
Now, the first law of thermodynamics says that the heat added goes towards work and internal energy. Both spheres have to do the same amount of work to expand against the air, so that's not the key. The important thing is that one sphere has to do work to expand
against gravity, while the other just let's gravity do the work.
The heat given to the ball on the floor will go into doing work
against gravity, therefore less of the heat will go towards internal energy.
The heat given to the ball on the string will go into internal energy, and gravity also contributes positive work. Because the ball on the string has a higher change in internal energy, the ball on the string has a higher temperature.
(PS: Out of curiosity, what contest are you preparing for?)