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Note on an Approximation Treatment for Many-Electron Systems

Chr. Møller, +1 more
- 01 Oct 1934 - 
- Vol. 46, Iss: 7, pp 618-622
TLDR
In this article, a perturbation theory for treating a system of n electrons in which the Hartree-Fock solution appears as the zero-order approximation was developed, and it was shown by this development that the first order correction for the energy and the charge density of the system is zero.
Abstract
A perturbation theory is developed for treating a system of n electrons in which the Hartree-Fock solution appears as the zero-order approximation. It is shown by this development that the first order correction for the energy and the charge density of the system is zero. The expression for the second-order correction for the energy greatly simplifies because of the special property of the zero-order solution. It is pointed out that the development of the higher approximation involves only calculations based on a definite one-body problem.

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Double-hybrid density functional theory for excited electronic states of molecules

TL;DR: Compared to conventional HF-based CIS(D), the method is more robust in electronically complex situations due to the implicit account of static correlation effects by the GGA parts and the (D) correction often works in the right direction.
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Convergence of an improved CIPSI algorithm

TL;DR: In this paper, the configuration interaction CIPSI algorithm defines three classes of determinants of decreasing importance; the most important ones are generators, the mean class (∼ 10 3 ) is treated variationally or to the fourth order.
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An Extension and Further Validation of an All-Atomistic Force Field for Biological Membranes.

TL;DR: The compatibility with amino acid FFs from the AMBER family is tested in explicit transmembrane complexes of the WALP23 peptide with DLPC and DOPC bilayers, and this shows that Slipids can be used to study more complex and biologically relevant systems.
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Identifying and Analyzing Intermolecular Bonding Interactions in van der Waals Molecules

TL;DR: In this article, the role of the intermolecular charge density in binding was investigated in a set of 36 configurations of 11 van der Waals dimers and a trimer, none of which contained a hydrogen bond.
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Ab Initio Calculations on Conventional and Unconventional Hydrogen BondsStudy of the Hydrogen Bond Strength

TL;DR: In this paper, the Bader theory of atoms in molecules is also applied for an estimation of electronic densities at bond critical points and Laplacians of these densities, these topological parameters are also used to define H-bond strength measures.
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