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Johari

Showing results (11-20 of 1,334) with videos related to

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The Journal of Chemical Physics|April 8, 2010
Configurational and residual entropies of nonergodic crystals and the entropy's behavior on glass formationG P Johari
The Journal of Chemical Physics|March 27, 2007
Determining vibrational heat capacity and thermal expansivity and their change at glass-liquid transitionG P Johari
The Journal of Chemical Physics|April 26, 2005
Dielectric relaxation time of bulk water at 136-140 K, background loss and crystallization effectsG P Johari
The Journal of Chemical Physics|April 26, 2013
Effects of electric field on the entropy, viscosity, relaxation time, and glass-formationG P Johari
The Journal of Chemical Physics|November 3, 2016
Effects of electric field on thermodynamics and ordering of a dipolar liquidG P Johari
The Journal of Physical Chemistry. B|January 17, 2018
Increasing the Ambient Pressure Solubility by Forming a Glass at High Pressure and Its Thermodynamics, a Much Sought-After Pharmaceutical AdvantageG P Johari
Science (New York, N.Y.)|July 5, 1996
Two Calorimetrically Distinct States of Liquid Water Below 150 KelvinJohari, Hallbrucker, Mayer
The Journal of Physical Chemistry. B|October 24, 2019
Effects of Microstructure and Sample's Surface to Volume Ratio on Pressure-Induced Nucleation and Transformation to Crystalline and Apparently Amorphous SolidsG P Johari
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 21, 2011
Mechanical relaxation and the notion of time-dependent extent of ergodicity during the glass transitionG P Johari
Physical Chemistry Chemical Physics : PCCP|October 2, 2009
State of water at 136 K determined by its relaxation timeG P Johari
Pageof 134

Showing results (11-20 of 1,334) with videos related to

Sort By:
Pageof 134
The Journal of Chemical Physics|April 8, 2010
Configurational and residual entropies of nonergodic crystals and the entropy's behavior on glass formationG P Johari
The Journal of Chemical Physics|March 27, 2007
Determining vibrational heat capacity and thermal expansivity and their change at glass-liquid transitionG P Johari
The Journal of Chemical Physics|April 26, 2005
Dielectric relaxation time of bulk water at 136-140 K, background loss and crystallization effectsG P Johari
The Journal of Chemical Physics|April 26, 2013
Effects of electric field on the entropy, viscosity, relaxation time, and glass-formationG P Johari
The Journal of Chemical Physics|November 3, 2016
Effects of electric field on thermodynamics and ordering of a dipolar liquidG P Johari
The Journal of Physical Chemistry. B|January 17, 2018
Increasing the Ambient Pressure Solubility by Forming a Glass at High Pressure and Its Thermodynamics, a Much Sought-After Pharmaceutical AdvantageG P Johari
Science (New York, N.Y.)|July 5, 1996
Two Calorimetrically Distinct States of Liquid Water Below 150 KelvinJohari, Hallbrucker, Mayer
The Journal of Physical Chemistry. B|October 24, 2019
Effects of Microstructure and Sample's Surface to Volume Ratio on Pressure-Induced Nucleation and Transformation to Crystalline and Apparently Amorphous SolidsG P Johari
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 21, 2011
Mechanical relaxation and the notion of time-dependent extent of ergodicity during the glass transitionG P Johari
Physical Chemistry Chemical Physics : PCCP|October 2, 2009
State of water at 136 K determined by its relaxation timeG P Johari
Pageof 134