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Meirovitch

Showing results (1-10 of 131) with videos related to

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Biopolymers|January 1, 1996
New theoretical methodology for elucidating the solution structure of peptides from NMR data. II. Free energy of dominant microstates of Leu-enkephalin and population-weighted average nuclear Overhauser effects intensitiesE Meirovitch, H Meirovitch
The Journal of Physical Chemistry. B|May 10, 2012
SRLS analysis of 15N relaxation from bacteriophage T4 lysozyme: a tensorial perspective that features domain motionEva Meirovitch
Journal of Computational Chemistry|March 27, 2002
Polymer collapse, protein folding, and the percolation thresholdHagai Meirovitch
Current Opinion in Structural Biology|March 31, 2007
Recent developments in methodologies for calculating the entropy and free energy of biological systems by computer simulationHagai Meirovitch
Journal of Molecular Recognition : JMR|August 4, 2009
Methods for calculating the absolute entropy and free energy of biological systems based on ideas from polymer physicsHagai Meirovitch
Journal of Chemical Theory and Computation|December 2, 2015
Stability of the Free and Bound Microstates of a Mobile Loop of α-Amylase Obtained from the Absolute Entropy and Free EnergySrinath Cheluvaraja, Hagai Meirovitch
Proteins|April 16, 2003
Solvation parameters for predicting the structure of surface loops in proteins: transferability and entropic effectsBedamati Das, Hagai Meirovitch
The Journal of Physical Chemistry. B|May 14, 2009
Absolute free energy and entropy of a mobile loop of the enzyme acetylcholinesteraseMihail Mihailescu, Hagai Meirovitch
The Journal of Physical Chemistry. B|March 11, 2017
<sup>15</sup>N-H-Related Conformational Entropy Changes Entailed By Plexin-B1 RBD Dimerization: Combined Molecular Dynamics/NMR Relaxation ApproachMirco Zerbetto, Eva Meirovitch
Proceedings of the National Academy of Sciences of the United States of America|June 16, 2004
Simulation method for calculating the entropy and free energy of peptides and proteinsSrinath Cheluvaraja, Hagai Meirovitch
Pageof 14

Showing results (1-10 of 131) with videos related to

Sort By:
Pageof 14
Biopolymers|January 1, 1996
New theoretical methodology for elucidating the solution structure of peptides from NMR data. II. Free energy of dominant microstates of Leu-enkephalin and population-weighted average nuclear Overhauser effects intensitiesE Meirovitch, H Meirovitch
The Journal of Physical Chemistry. B|May 10, 2012
SRLS analysis of 15N relaxation from bacteriophage T4 lysozyme: a tensorial perspective that features domain motionEva Meirovitch
Journal of Computational Chemistry|March 27, 2002
Polymer collapse, protein folding, and the percolation thresholdHagai Meirovitch
Current Opinion in Structural Biology|March 31, 2007
Recent developments in methodologies for calculating the entropy and free energy of biological systems by computer simulationHagai Meirovitch
Journal of Molecular Recognition : JMR|August 4, 2009
Methods for calculating the absolute entropy and free energy of biological systems based on ideas from polymer physicsHagai Meirovitch
Journal of Chemical Theory and Computation|December 2, 2015
Stability of the Free and Bound Microstates of a Mobile Loop of α-Amylase Obtained from the Absolute Entropy and Free EnergySrinath Cheluvaraja, Hagai Meirovitch
Proteins|April 16, 2003
Solvation parameters for predicting the structure of surface loops in proteins: transferability and entropic effectsBedamati Das, Hagai Meirovitch
The Journal of Physical Chemistry. B|May 14, 2009
Absolute free energy and entropy of a mobile loop of the enzyme acetylcholinesteraseMihail Mihailescu, Hagai Meirovitch
The Journal of Physical Chemistry. B|March 11, 2017
<sup>15</sup>N-H-Related Conformational Entropy Changes Entailed By Plexin-B1 RBD Dimerization: Combined Molecular Dynamics/NMR Relaxation ApproachMirco Zerbetto, Eva Meirovitch
Proceedings of the National Academy of Sciences of the United States of America|June 16, 2004
Simulation method for calculating the entropy and free energy of peptides and proteinsSrinath Cheluvaraja, Hagai Meirovitch
Pageof 14