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J W Brady

Showing results (1-10 of 24) with videos related to

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Protein Engineering|January 1, 1992
Molecular dynamics simulations of the whey protein beta-lactoglobulinW Gu, J W Brady
Biopolymers|April 1, 1996
The effect of hydration upon the conformation and dynamics of neocarrabiose, a repeat unit of beta-carrageenanK Ueda, J W Brady
Biopolymers|May 1, 1990
Disaccharide conformational flexibility. I. An adiabatic potential energy map for sucroseV H Tran, J W Brady
Advances in Experimental Medicine and Biology|January 1, 1991
Molecular dynamics simulation of the aqueous solvation of sugarsJ W Brady, S N Ha
Biopolymers|May 1, 1990
Disaccharide conformational flexibility. II. Molecular dynamics simulations of sucroseV H Tran, J W Brady
The Journal of Physical Chemistry. B|May 2, 2007
"Tetrahedrality" and the relationship between collective structure and radial distribution functions in liquid waterP E Mason, J W Brady
Journal of Computational Chemistry|September 5, 2002
Carbohydrate solution simulations: producing a force field with experimentally consistent primary alcohol rotational frequencies and populationsMichelle Kuttel, J W Brady, Kevin J Naidoo
The Journal of Experimental Medicine|October 30, 2009
RELATION BETWEEN THE VIRULENCE OF STREPTOCOCCI AND HEMOLYSINF A Stevens, J W Brady, R West
Protein Engineering|March 26, 1998
Molecular dynamics simulations of the N-linked oligosaccharide of the lectin from Erythrina corallodendronK J Naidoo, D Denysyk, J W Brady
Biopolymers|October 1, 1993
Molecular dynamics simulations of a winter flounder "antifreeze" polypeptide in aqueous solutionS M McDonald, J W Brady, P Clancy
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
Protein Engineering|January 1, 1992
Molecular dynamics simulations of the whey protein beta-lactoglobulinW Gu, J W Brady
Biopolymers|April 1, 1996
The effect of hydration upon the conformation and dynamics of neocarrabiose, a repeat unit of beta-carrageenanK Ueda, J W Brady
Biopolymers|May 1, 1990
Disaccharide conformational flexibility. I. An adiabatic potential energy map for sucroseV H Tran, J W Brady
Advances in Experimental Medicine and Biology|January 1, 1991
Molecular dynamics simulation of the aqueous solvation of sugarsJ W Brady, S N Ha
Biopolymers|May 1, 1990
Disaccharide conformational flexibility. II. Molecular dynamics simulations of sucroseV H Tran, J W Brady
The Journal of Physical Chemistry. B|May 2, 2007
"Tetrahedrality" and the relationship between collective structure and radial distribution functions in liquid waterP E Mason, J W Brady
Journal of Computational Chemistry|September 5, 2002
Carbohydrate solution simulations: producing a force field with experimentally consistent primary alcohol rotational frequencies and populationsMichelle Kuttel, J W Brady, Kevin J Naidoo
The Journal of Experimental Medicine|October 30, 2009
RELATION BETWEEN THE VIRULENCE OF STREPTOCOCCI AND HEMOLYSINF A Stevens, J W Brady, R West
Protein Engineering|March 26, 1998
Molecular dynamics simulations of the N-linked oligosaccharide of the lectin from Erythrina corallodendronK J Naidoo, D Denysyk, J W Brady
Biopolymers|October 1, 1993
Molecular dynamics simulations of a winter flounder "antifreeze" polypeptide in aqueous solutionS M McDonald, J W Brady, P Clancy
Pageof 3