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Gaussian Basis Functions for Use in Molecular Calculations. I. Contraction of (9s5p) Atomic Basis Sets for the First-Row Atoms

The Journal of Chemical Physics · 1970 · Vol. 53(7) · pp. 2823–2833
Thom H. Dunning

Abstract

The contraction of Gaussian basis functions for use in molecular calculations is investigated by considering the effects of contraction on the energies and one-electron properties of the water and nitrogen molecules. The emphasis is on obtaining principles which can be used to predict optimal contraction schemes for other systems without the necessity of such exhaustive calculations. Using these principles, contractions are predicted for the first-row atoms.

History and advancements in chemistryVarious Chemistry Research TopicsChemical Thermodynamics and Molecular StructureContraction (grammar)GaussianBasis (linear algebra)Statistical physicsBasis functionComputational chemistryChemistryMathematicsPhysicsQuantum mechanics
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References
New Developments in Molecular Orbital Theory
Reviews of Modern Physics · 1951 · 5,468 citations
Electronic wave functions - I. A general method of calculation for the stationary states of any molecular system
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1950 · 1,249 citations
Gaussian-Type Functions for Polyatomic Systems. I
The Journal of Chemical Physics · 1965 · 4,957 citations
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Gaussian Basis Functions for Use in Molecular Calculations. I. Contraction of (9s5p) Atomic Basis Sets for the First-Row Atoms · Scinovex