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Ivo Nezbeda

Showing results (11-20 of 26) with videos related to

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The Journal of Chemical Physics|October 5, 2013
Molecular simulation of aqueous electrolytes: water chemical potential results and Gibbs-Duhem equation consistency testsFilip Moučka, Ivo Nezbeda, William R Smith
Journal of Chemical Theory and Computation|November 18, 2015
Chemical Potentials, Activity Coefficients, and Solubility in Aqueous NaCl Solutions: Prediction by Polarizable Force FieldsFilip Moučka, Ivo Nezbeda, William R Smith
Journal of Chemical Theory and Computation|November 20, 2015
Molecular Force Field Development for Aqueous Electrolytes: 1. Incorporating Appropriate Experimental Data and the Inadequacy of Simple Electrolyte Force Fields Based on Lennard-Jones and Point Charge Interactions with Lorentz-Berthelot RulesFilip Moučka, Ivo Nezbeda, William R Smith
The Journal of Chemical Physics|April 15, 2010
Liquid/vapor coexistence and surface tension of the Sutherland fluid with a variable range of interaction: computer simulation and perturbation theory studiesRoman Melnyk, Pedro Orea, Ivo Nezbeda, et al.
Soft Matter|March 24, 2020
Integral equation theory for a mixture of spherical and patchy colloids: analytical descriptionYurij V Kalyuzhnyi, Ivo Nezbeda, Peter T Cummings
Physical Review Letters|October 13, 2007
Percolation transition in fluids: scaling behavior of the spanning probability functionsJirí Skvor, Ivo Nezbeda, Ivan Brovchenko, et al.
Soft Matter|March 4, 2021
Integral equation theory for mixtures of spherical and patchy colloids. 2. Numerical resultsYurij V Kalyuzhnyi, Ivo Nezbeda, Peter T Cummings
Journal of Molecular Graphics & Modelling|July 3, 2017
A general method for determining molecular interfaces and layersJiří Škvor, Jiří Škvára, Jan Jirsák, et al.
The Journal of Chemical Physics|July 30, 2005
Hard-sphere radial distribution function againAndrij Trokhymchuk, Ivo Nezbeda, Jan Jirsák, et al.
The Journal of Chemical Physics|September 14, 2010
EXP6 fluids at extreme conditions modeled by two-Yukawa potentialsJan Krejcí, Ivo Nezbeda, Roman Melnyk, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
The Journal of Chemical Physics|October 5, 2013
Molecular simulation of aqueous electrolytes: water chemical potential results and Gibbs-Duhem equation consistency testsFilip Moučka, Ivo Nezbeda, William R Smith
Journal of Chemical Theory and Computation|November 18, 2015
Chemical Potentials, Activity Coefficients, and Solubility in Aqueous NaCl Solutions: Prediction by Polarizable Force FieldsFilip Moučka, Ivo Nezbeda, William R Smith
Journal of Chemical Theory and Computation|November 20, 2015
Molecular Force Field Development for Aqueous Electrolytes: 1. Incorporating Appropriate Experimental Data and the Inadequacy of Simple Electrolyte Force Fields Based on Lennard-Jones and Point Charge Interactions with Lorentz-Berthelot RulesFilip Moučka, Ivo Nezbeda, William R Smith
The Journal of Chemical Physics|April 15, 2010
Liquid/vapor coexistence and surface tension of the Sutherland fluid with a variable range of interaction: computer simulation and perturbation theory studiesRoman Melnyk, Pedro Orea, Ivo Nezbeda, et al.
Soft Matter|March 24, 2020
Integral equation theory for a mixture of spherical and patchy colloids: analytical descriptionYurij V Kalyuzhnyi, Ivo Nezbeda, Peter T Cummings
Physical Review Letters|October 13, 2007
Percolation transition in fluids: scaling behavior of the spanning probability functionsJirí Skvor, Ivo Nezbeda, Ivan Brovchenko, et al.
Soft Matter|March 4, 2021
Integral equation theory for mixtures of spherical and patchy colloids. 2. Numerical resultsYurij V Kalyuzhnyi, Ivo Nezbeda, Peter T Cummings
Journal of Molecular Graphics & Modelling|July 3, 2017
A general method for determining molecular interfaces and layersJiří Škvor, Jiří Škvára, Jan Jirsák, et al.
The Journal of Chemical Physics|July 30, 2005
Hard-sphere radial distribution function againAndrij Trokhymchuk, Ivo Nezbeda, Jan Jirsák, et al.
The Journal of Chemical Physics|September 14, 2010
EXP6 fluids at extreme conditions modeled by two-Yukawa potentialsJan Krejcí, Ivo Nezbeda, Roman Melnyk, et al.
Pageof 3