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Basics of Quantum Mechanics - for Quantum Chemists mainly - Part 1
01:12:58
2. The molecular Hamiltonian
00:10:55
1. The time-independent Schrodinger equation
00:08:42
3. Molecular structure and Born-Oppenheimer approximation
00:13:28
5. The Hartree-Fock (determinant) wavefunction
00:04:25
4. The Hartree product wavefunction
00:06:40
6. The accuracy of Hartree-Fock wavefunctions - briefly
00:06:32
0. Introduction
00:01:06
14. Gaussian basis functions
00:12:24
13. Linear combinations of basis functions
00:02:31
16. MP2 theory
00:20:58
8a. The antisymmetriser is nearly a projection
00:08:11
15. Lagrange's method of undetermined multipliers
00:09:05
9. Overlap between determinants
00:05:48
7. Kohn's thoughts on the wavefunction
00:05:26
10. One-electron determinant matrix elements
00:06:32
8b. Dealing with permutations in determinant matrix elements
00:07:01
11 Two-electron determinant matrix elements
00:07:55
12 The Hartree-Fock Energy
00:02:02
CHEM3006 - S1 - Chemistry of Titan
00:38:32
CHEM3006 - 35 - Using overlapping Pourbaix diagrams to predict reactions
00:05:46
CHEM3006 - 34 - Pourbaix diagrams: what is pE and electron concentration?
00:06:02
CHEM3006 - 33 - How can you change E, the electrochemical potential?
00:02:15
CHEM3006 - 32 - Constructing the Zn/H2O Pourbaix diagram
00:08:35
CHEM3006 - 31 - Pourbaix diagrams: how they work
00:10:22
CHEM3006 - 30 - Pourbaix diagrams: what are they?
00:07:43
CHEM3006 - 27 - Hard soft acid base theory
00:06:42
CHEM3006 - 29 - Chelate effect
00:04:35
CHEM3006 - 28 - Hard soft acid base theory examples
00:07:35
CHEM3006 - 26 - Formation constants
00:03:16