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David Miller Quantum Mechanics Courses @UCmf4YWFaU32kIvEatnFgmzQ@youtube.com

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10:23
Multiple particle states – David Miller
16:17
Exchange energy – David Miller
03:41
States, single-particle states, and modes – David Miller
04:11
Fermions and bosons – David Miller
17:33
Scattering identical particles – David Miller
03:52
Where does spin come from? – David Miller
07:57
The Pauli equation – David Miller
11:55
Wavefunctions, spin and Hilbert space – David Miller
11:04
Visualizing spin states – David Miller
08:34
Operators for spin angular momentum – David Miller
09:50
Spin angular momentum – David Miller
10:36
Angular momentum and magnetic moments – David Miller
01:56
Introduction to electron spin – David Miller
08:16
Penetration factor for slowly varying barriers – David Miller
03:50
Transfer matrix and bound states – David Miller
26:56
Transfer matrix method – David Miller
13:31
Tunneling currents – David Miller
02:08
Introduction to methods for one-dimensional problems – David Miller
05:45
Absorption coefficient – David Miller
15:50
Total transition rate – David Miller
10:32
Transitioning from sums to integrals – David Miller
18:36
Direct transitions – David Miller
10:06
Perturbing Hamiltonian – David Miller
02:56
Introduction to optical absorption in semiconductors – David Miller
10:21
Density of states in quantum wells – David Miller
11:21
Quantum wells – David Miller
07:04
Energy density of states in bulk crystals – David Miller
10:30
Semiconductor heterostructures – David Miller
15:17
Wavepackets and effective mass theory – David Miller
08:32
Effective mass approximation – David Miller
10:47
Band structures in 3D – David Miller
07:29
Semiconductors, insulators and metals – David Miller
10:42
Band structure diagrams – David Miller
01:51
Band structures – David Miller
13:02
Density of states in k-space – David Miller
17:26
Bloch theorem derivation – David Miller
11:58
Periodic boundary conditions – David Miller
18:41
Crystal structures – David Miller
03:16
Introduction to quantum mechanics in crystals – David Miller
21:53
Refractive index – David Miller
14:39
Fermi’s Golden Rule – David Miller
07:14
Transition probabilities – David Miller
09:00
Simple oscillating perturbations – David Miller
16:46
Time-dependent perturbation basics – David Miller
14:35
The variational method – David Miller
19:36
Tight binding model – David Miller
14:58
Applying perturbation theory – David Miller
16:10
First and second order theories – David Miller
23:47
Constructing perturbation theory – David Miller
10:57
Use of finite matrices – David Miller
07:15
Potential well with field – David Miller
04:17
Approximation methods – introduction – David Miller
20:47
Radial equation solutions – David Miller
11:07
Separating for the radial equation – David Miller
08:08
Informal solution for the relative motion – David Miller
23:07
Solving the hydrogen atom problem – David Miller
07:38
Multiple particle wavefunctions – David Miller
03:41
Notations for spherical harmonics – David Miller
13:53
Visualizing spherical harmonics – David Miller
15:12
Separating the L squared operator – David Miller