Spartan (chemistry software)
http://dbpedia.org/resource/Spartan_(chemistry_software) an entity of type: Thing
Spartan(スパルタン)は分子モデリング、および計算化学のためのアプリケーションソフトウェアで、米国法人Wavefunction, Inc. が開発元である。計算手法として、分子力学法、半経験的分子軌道法、非経験的分子軌道法、密度汎関数法、post Hartree-Fockモデル、T1を含む熱化学的レシピを装備している。
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Spartan is a molecular modelling and computational chemistry application from Wavefunction. It contains code for molecular mechanics, semi-empirical methods, ab initio models, density functional models, post-Hartree–Fock models, and thermochemical recipes including G3(MP2) and T1. Quantum chemistry calculations in Spartan are powered by Q-Chem.
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Spartan
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Spartan (chemistry software)
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Spartan
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Spartan
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4646870
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1121311182
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2
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3
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Spartan graphical user interface
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Wavefunction, Inc. & Q-Chem
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The molecule phenyl 9-acridinecarboxylate.
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Phenyl 9-acridinecarboxylate 2D.PNG
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Phenyl 9-acridinecarboxylate 3D.png
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English
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Spartan'20 v.1.1
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Windows, Mac OS X, Linux
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ScreenCaptureSpartan14.PNG
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107
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Spartan is a molecular modelling and computational chemistry application from Wavefunction. It contains code for molecular mechanics, semi-empirical methods, ab initio models, density functional models, post-Hartree–Fock models, and thermochemical recipes including G3(MP2) and T1. Quantum chemistry calculations in Spartan are powered by Q-Chem. Primary functions are to supply information about structures, relative stabilities and other properties of isolated molecules. Molecular mechanics calculations on complex molecules are common in the chemical community. Quantum chemical calculations, including Hartree–Fock method molecular orbital calculations, but especially calculations that include electronic correlation, are more time-consuming in comparison. Quantum chemical calculations are also called upon to furnish information about mechanisms and product distributions of chemical reactions, either directly by calculations on transition states, or based on Hammond's postulate, by modeling the steric and electronic demands of the reactants. Quantitative calculations, leading directly to information about the geometries of transition states, and about reaction mechanisms in general, are increasingly common, while qualitative models are still needed for systems that are too large to be subjected to more rigorous treatments. Quantum chemical calculations can supply information to complement existing experimental data or replace it altogether, for example, atomic charges for quantitative structure-activity relationship (QSAR) analyses, and intermolecular potentials for molecular mechanics and molecular dynamics calculations. Spartan applies computational chemistry methods (theoretical models) to many standard tasks that provide calculated data applicable to the determination of molecular shape conformation, structure (equilibrium and transition state geometry), NMR, IR, Raman, and UV-visible spectra, molecular (and atomic) properties, reactivity, and selectivity.
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Spartan(スパルタン)は分子モデリング、および計算化学のためのアプリケーションソフトウェアで、米国法人Wavefunction, Inc. が開発元である。計算手法として、分子力学法、半経験的分子軌道法、非経験的分子軌道法、密度汎関数法、post Hartree-Fockモデル、T1を含む熱化学的レシピを装備している。
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48833
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Spartan'20 v.1.1