Quantum Chemistry

Chemistry 277: A First Year Graduate Course

Prof. J. C. Baird

Financially Supported by J. C. Baird
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Introduction to Quantum Chemistry

The Classic Paradoxes of Quantum Theory

Measurement in Quantum Mechanics Frequently Asked Questions

How to play the Quantum Mechanical Game: Download

How to play the Quantum Mechanical Game

Lecture I: Introduction to Quantum Chemistry


Brief Review of Classical Mechanics

Lecture II: Classical Mechanics Review

Lecture III: Damped and Driven Classical Oscillator

Lecture IV: Classical Electrodynamics


Foundations of Quantum Mechanics

Prof. C-I Tan on Hilbert Space

Lecture V: Postulates of Quantum Mechanics


Simple Potential Problems

An Electron In a Nanotube

Lecture VI: Simple Potential Problems: The Free Particle and Tunneling through Barriers

Lecture VII: Simple Potential Problems: Partiicle in a Box

Lecture VIII: Simple Potential Problems: Particle Constrained to a Disk

Preprint: Zero Energy Bound States

Lecture IX: Model of a Solid State Device

Lecture X: The Simple Harmonic Oscillator


Interlude: Topological Spaces & Curvilinear Coordinates


Angular Momentum

Lecture XI: Angular Momentum


Symmetry

Lecture XII: Symmetry in Molecular Quantum Mechanics


Approximation Methods

Monte Carlo Demo of a Ising Lattice of Spins


Atomic Structure


Molecular Electronic Structure


Molecular Mechanics: Rotations of a Rigid Molecule

Molecular Mechanics: Molecular Vibrations

Molecular Mechanics: Floppy Molecules


Radiation & Matter: Fundamentals of Spectroscopy

Lecture XIII: The Interaction between Radiation and Matter - Molecular Spectroscopy


Mathematical Appendix

Mathematical Methods Useful in Quantum Chemistry

A Few Computer Programs



Fundamental Constants


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