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Fedorov

Showing results (261-270 of 4,482) with videos related to

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The Journal of Chemical Physics|July 30, 2004
Second order Møller-Plesset perturbation theory based upon the fragment molecular orbital methodDmitri G Fedorov, Kazuo Kitaura
Journal of Biopharmaceutical Statistics|November 21, 2007
Dose finding designs for continuous responses and binary utilityValerii V Fedorov, Yuehui Wu
The Journal of Physical Chemistry. A|March 8, 2016
Subsystem Analysis for the Fragment Molecular Orbital Method and Its Application to Protein-Ligand Binding in SolutionDmitri G Fedorov, Kazuo Kitaura
The Journal of Chemical Physics|March 23, 2021
The fragment molecular orbital method combined with density-functional tight-binding and periodic boundary conditionsYoshio Nishimoto, Dmitri G Fedorov
The Journal of Physical Chemistry Letters|February 10, 2022
Free Energy Decomposition Analysis Based on the Fragment Molecular Orbital MethodDmitri G Fedorov, Taiji Nakamura
Journal of Chemical Theory and Computation|February 8, 2023
Analytic Gradient for Time-Dependent Density Functional Theory Combined with the Fragment Molecular Orbital MethodHiroya Nakata, Dmitri G Fedorov
Light, Science & Applications|December 10, 2020
Powerful terahertz waves from long-wavelength infrared laser filamentsVladimir Yu Fedorov, Stelios Tzortzakis
Physical Review Letters|November 24, 2011
Controlling the propagation velocity of a femtosecond laser pulse with negative index metamaterialsVladimir Yu Fedorov, Takashi Nakajima
Chemistry (Weinheim an Der Bergstrasse, Germany)|June 7, 2000
Excision of theMironov, Virovets, Naumov, et al.
The Journal of Physical Chemistry. A|December 16, 2016
Efficient Geometry Optimization of Large Molecular Systems in Solution Using the Fragment Molecular Orbital MethodHiroya Nakata, Dmitri G Fedorov
Pageof 449

Showing results (261-270 of 4,482) with videos related to

Sort By:
Pageof 449
The Journal of Chemical Physics|July 30, 2004
Second order Møller-Plesset perturbation theory based upon the fragment molecular orbital methodDmitri G Fedorov, Kazuo Kitaura
Journal of Biopharmaceutical Statistics|November 21, 2007
Dose finding designs for continuous responses and binary utilityValerii V Fedorov, Yuehui Wu
The Journal of Physical Chemistry. A|March 8, 2016
Subsystem Analysis for the Fragment Molecular Orbital Method and Its Application to Protein-Ligand Binding in SolutionDmitri G Fedorov, Kazuo Kitaura
The Journal of Chemical Physics|March 23, 2021
The fragment molecular orbital method combined with density-functional tight-binding and periodic boundary conditionsYoshio Nishimoto, Dmitri G Fedorov
The Journal of Physical Chemistry Letters|February 10, 2022
Free Energy Decomposition Analysis Based on the Fragment Molecular Orbital MethodDmitri G Fedorov, Taiji Nakamura
Journal of Chemical Theory and Computation|February 8, 2023
Analytic Gradient for Time-Dependent Density Functional Theory Combined with the Fragment Molecular Orbital MethodHiroya Nakata, Dmitri G Fedorov
Light, Science & Applications|December 10, 2020
Powerful terahertz waves from long-wavelength infrared laser filamentsVladimir Yu Fedorov, Stelios Tzortzakis
Physical Review Letters|November 24, 2011
Controlling the propagation velocity of a femtosecond laser pulse with negative index metamaterialsVladimir Yu Fedorov, Takashi Nakajima
Chemistry (Weinheim an Der Bergstrasse, Germany)|June 7, 2000
Excision of theMironov, Virovets, Naumov, et al.
The Journal of Physical Chemistry. A|December 16, 2016
Efficient Geometry Optimization of Large Molecular Systems in Solution Using the Fragment Molecular Orbital MethodHiroya Nakata, Dmitri G Fedorov
Pageof 449