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Lecture Notes

This section contains documents created from scanned original files, which are inaccessible to screen reader software. A "#" symbol is used to denote such documents.


Lec # TOPICS
1 Overview, Scale of Quantum Mechanics, Boundary between Classical and Quantum Phenomena (PDF)#
2 Planck's Constant, Interference, Fermat's Principle of Least Time, deBroglie Wavelength (PDF)#
3 Double Slit Experiment with Electrons and Photons, Wave Particle Duality, Heisenberg Uncertainty (PDF)#
4 Wavefunctions and Wavepackets, Probability and Probability Amplitude, Probability Density (PDF)#
5 Thomson Atom, Rutherford Scattering (PDF)#
6 Photoelectric Effect, X-rays, Compton Scattering, Franck Hertz Experiment (PDF)#
7 Bohr Model, Hydrogen Spectral Lines (PDF)#
8 Bohr Correspondence Principle, Shortcomings of Bohr Model, Wilson-Sommerfeld Quantization Rules (PDF)#
9 Schrödinger Equation in One Dimension, Infinite 1D Well (PDF)#
10 Eigenfunctions as Basis, Interpretation of Expansion Coefficients, Measurement (PDF)#
11 Operators and Expectation Values, Time Evolution of Eigenstates, Classical Limit, Ehrenfest's Theorem (PDF)#
12 Eigenfunctions of p and x, Dirac Delta Function, Fourier Transform (PDF)#
13 Wavefunctions and Operators in Position and Momentum Space, Commutators and Uncertainty (PDF)#
14 Motion of Wavepackets, Group Velocity and Stationary Phase, 1D Scattering off Potential Step (PDF)#
15 Boundary Conditions, 1D Problems: Finite Square Well, Delta Function potential (PDF)#
16 More 1D Problems, Tunneling (PDF)#
17 Harmonic Oscillator: Series Method (PDF)#
18 Harmonic Oscillator: Operator Method, Dirac Notation (PDF)#
19 Schrödinger Equation in 3D: Cartesian, Spherical Coordinates (PDF)#
20 Angular Momentum, Simultaneous Eigenfunctions (PDF)#
21 Spherical Harmonics (PDF)#
22 Hydrogen Atom: Radial Equation (PDF)#
23 Hydrogen Atom: 3D Eigenfunctions and Spectrum (PDF)#
24 Entanglement, Einstein-Podolsky Rosen Paradox (PDF)#