Physics, 12.07.2019 19:30 babysune01
[fluctuation and specific heat] near the critical point we know (fi) for sorne positive exponent α (a critical exponent). this divergence should be understood as a large (internal) energy (density) fluctuation of the system (1) using the canonical partition function, compute the second moment of the internal energy fluctuation: ( (f2) where h is the system hamiltonian (for simplicity we consider a large but finite syste (2) relate cv to the energy fluctuation this is an almost obvious question
Answers: 1
Physics, 21.06.2019 16:00
Your pendulum clock which advances 1.0 s for every complete oscillation of the pendulum is running perfectly on earth at a site where the magnitude of the acceleration due to gravity is 9.80 m/s2. you send the clock to a location on the moon where the magnitude of the acceleration due to gravity is 1.65 m/s2.
Answers: 2
Physics, 22.06.2019 08:30
Does anyone know how to solve this problem? i really need . i made an attempt but i just cant get it. a metal rod is 25.000 cm long at 25.0 degrees celsius. when heated to 102.0 degrees celsius, it is 25.054 cm long. what is the coefficient of linear expansion for this metal.
Answers: 3
[fluctuation and specific heat] near the critical point we know (fi) for sorne positive exponent α (...
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