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Merged Anton Akhmerov requested to merge learning_goals into master
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@@ -19,9 +19,9 @@ Exercises 9.2, 9.4, 10.1, 10.2, 11.2, 11.5
After this lecture you will be able to:
- formulate equations of motion describing electrons and phonons in 1D.
- formulate equations of motion for electrons and phonons in 1D.
- solve these equations to arrive at the corresponding dispersion relations.
- derive the group velocity, effective mass, and density of states from a dispersion relation.
- derive the group velocity, effective mass, and density of states from the dispersion relation.
Last lecture:
@@ -257,7 +257,9 @@ Also a sanity check: when the energy is close to the bottom of the band, $E = E_
After this lecture you will be able to:
- formulate equations of motion describing electrons and phonons in 1D when there is more than one degree of freedom per unit cell
- formulate equations of motion for electrons or phonons in 1D for systems with more than one degree of freedom per unit cell.
- solve these equations to arrive at the dispersion relation.
- derive the group velocity, effective mass, and density of states.
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