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  2. Hartree–Fock method - Wikipedia

    en.wikipedia.org/wiki/HartreeFock_method

    The HartreeFock electronic wave function is then the Slater determinant constructed from these orbitals. Following the basic postulates of quantum mechanics, the HartreeFock wave function can then be used to compute any desired chemical or physical property within the framework of the HartreeFock method and the approximations employed.

  3. Koopmans' theorem - Wikipedia

    en.wikipedia.org/wiki/Koopmans'_theorem

    Near-HartreeFock calculations with a large basis set indicate that the 1π u bonding orbital is the HOMO. However the lowest ionization energy corresponds to removal of an electron from the 3σ g bonding orbital. In this case the deviation is attributed primarily to the difference in correlation energy between the two orbitals.

  4. Brillouin's theorem - Wikipedia

    en.wikipedia.org/wiki/Brillouin's_theorem

    In quantum chemistry, Brillouin's theorem, proposed by the French physicist Léon Brillouin in 1934, relates to HartreeFock wavefunctions. HartreeFock, or the self-consistent field method, is a non-relativistic method of generating approximate wavefunctions for a many-bodied quantum system, based on the assumption that each electron is exposed to an average of the positions of all other ...

  5. Multi-configurational self-consistent field - Wikipedia

    en.wikipedia.org/wiki/Multi-configurational_self...

    Multi-configurational self-consistent field (MCSCF) is a method in quantum chemistry used to generate qualitatively correct reference states of molecules in cases where HartreeFock and density functional theory are not adequate (e.g., for molecular ground states which are quasi-degenerate with low-lying excited states or in bond-breaking situations).

  6. Semi-empirical quantum chemistry method - Wikipedia

    en.wikipedia.org/wiki/Semi-empirical_quantum...

    Semi-empirical quantum chemistry methods are based on the HartreeFock formalism, but make many approximations and obtain some parameters from empirical data. They are very important in computational chemistry for treating large molecules where the full HartreeFock method without the approximations is too expensive.

  7. Configuration interaction - Wikipedia

    en.wikipedia.org/wiki/Configuration_interaction

    HartreeFock method Semi-empirical quantum chemistry methods Møller–Plesset perturbation theory Configuration interaction Coupled cluster Multi-configurational self-consistent field Quantum chemistry composite methods Quantum Monte Carlo: Density functional theory; Time-dependent density functional theory Thomas–Fermi model

  8. Roothaan equations - Wikipedia

    en.wikipedia.org/wiki/Roothaan_equations

    The Roothaan equations are a representation of the HartreeFock equation in a non orthonormal basis set which can be of Gaussian-type or Slater-type. It applies to closed-shell molecules or atoms where all molecular orbitals or atomic orbitals, respectively, are doubly occupied. This is generally called Restricted HartreeFock theory.

  9. PySCF - Wikipedia

    en.wikipedia.org/wiki/PySCF

    [1] [2] The package aims to provide a simple, light-weight and efficient platform for quantum chemistry code developing and calculation. It provides various functions to do the HartreeFock, MP2, density functional theory, MCSCF, coupled cluster theory at non-relativistic level and 4-component relativistic HartreeFock theory. [2]