1) Derive the Maxwell-Boltzmann law of distribution of
energy.
2) Applying Maxwell-Boltzmann distribution law,Show that the
internal energy of an ideal monoatomic gas depends only on its
temperature.
1) Derive the Fermi Dirac statistical distribution law.
2) Compare the three statistics Maxwell-Boltzmann
statistics,Bose-Einstein statistics,Fermi-Dirac Statistics.
Write the first law of thermodynamics for magnetic material, and
derive thermodynamic potentials and Maxwell equations. Determine
the difference in heat capacitance in the case of constant magnetic
field and permanent magnetization.
we
have the following statistics. maxwell-boltzmann, fermi-dirac and
bose-einstein.
when then sonsidering different systems which above statistics
would fit the best, give a short answer of why.
a) He4 under normal room conditions of temperature and
pressure
b) electrons in copper under normal room conditions
c) He4 at lambda point
d) electrons and holes in a semiconductor Ge in room
temperature, band gap 1V
Derive the Boltzmann distribution from first principles
(maximizing weight). Why is the Boltzmann distribution so
important, explain what it is and how it is used.
Describe the different models used to model the distribution of
particles in statistical mechanics, including Maxwell–Boltzmann,
Bose–Einstein, and Fermi–Dirac statistics. In each case, describe
the counting techniques used in the model.