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CI Continued/Many-Body Perturbation Theory
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Related lectures (30)
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Configuration Interaction: Excited State Configurations
Explores Configuration Interaction, Slater determinants, and matrix diagonalization in solving the many-electron Schrodinger equation.
Coupled Cluster: Perturbation Theory
Explores Møller-Plesset perturbation theory, basis functions, energy corrections, and wavefunction expansion in doubly excited Slater determinants.
Matrix Equations and Homogeneous Systems
Explores matrix equations, homogeneous systems, solutions, consistency, and properties.
Hartree-Fock Method: Basis Sets and Quantum Chemistry
Explores the Hartree-Fock method, basis sets, Slater determinants, and quantum chemistry concepts like spin contamination and Hund's rule.
Møller-Plesset Perturbation Theory
Covers Møller-Plesset perturbation theory, focusing on energy corrections and Slater-Condon rules.
Electronic Structure Methods
Covers the derivation of Hartree-Fock equations, two-electron integrals, dynamical and static correlation, continuous basis functions, spin contamination, and the coupled cluster method.
Electron Correlation: Theory and Methods
Explores electron correlation, exchange-correlation holes, and post-Hartree-Fock methods for accurate electronic structure calculations.
Linear Algebra: Matrices Properties
Explores properties of 3x3 matrices with real coefficients and determinant calculation methods.
Basis set superposition error
Explores Basis Set Superposition Error in quantum chemistry calculations and the Counter-Poise correction to estimate it.
Matrix Equations: Finding Free Variables
Explains how to find free variables in matrix equations and analyze characteristic polynomials.