Authors:
McCormick, LC
Slater, GW
Karger, AE
Vreeland, WN
Barron, AE
Desruisseaux, C
Drouin, G
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Citation: J. Boileau et Gw. Slater, An exactly solvable Ogston model of gel electrophoresis - VI. Towards a theory for macromolecules, ELECTROPHOR, 22(4), 2001, pp. 673-683
Citation: Jf. Mercier et al., An exactly solvable Ogston model of gel electrophoresis: VIII. Nonconducting gel fibers, curved field lines, and the Nernst-Einstein relation, ELECTROPHOR, 22(13), 2001, pp. 2631-2638
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Citation: Jf. Mercier et Gw. Slater, An exactly solvable ogston model of gel electrophoresis. 7. Diffusion and mobility of hard spherical particles in three-dimensional gels, MACROMOLEC, 34(10), 2001, pp. 3437-3445
Authors:
Desruisseaux, C
Long, D
Drouin, G
Slater, GW
Citation: C. Desruisseaux et al., Electrophoresis of composite molecular objects. 1. Relation between friction, charge, and ionic strength in free solution, MACROMOLEC, 34(1), 2001, pp. 44-52
Authors:
Vreeland, WN
Desruisseaux, C
Karger, AE
Drouin, G
Slater, GW
Barron, AE
Citation: Wn. Vreeland et al., Molar mass profiling of synthetic polymers by free-solution capillary electrophoresis of DNA-polymer conjugates, ANALYT CHEM, 73(8), 2001, pp. 1795-1803
Citation: J. Rousseau et al., Gel electrophoretic mobility of single-stranded DNA: The two reptation field-dependent factors, ELECTROPHOR, 21(8), 2000, pp. 1464-1470
Citation: J. Labrie et al., An exactly solvable Ogston model of gel electrophoresis V. Attractive gel-analyte interactions and their effects on the Ferguson plot, ELECTROPHOR, 21(5), 2000, pp. 823-833
Citation: Jf. Mercier et Gw. Slater, Random walk and diffusion of hard spherical particles in quenched systems:Reaching the continuum limit on a lattice, J CHEM PHYS, 113(20), 2000, pp. 9109-9112
Citation: S. Barsky et Gw. Slater, A nonequilibrium molecular dynamics simulation of the time-dependent orientational coupling between long and short chains in a bimodal polymer melt upon uniaxial stretching, MACROMOLEC, 32(19), 1999, pp. 6348-6358
Citation: Jf. Mercier et al., Numerically exact diffusion coefficients for lattice systems with periodicboundary conditions. I. Theory, J CHEM PHYS, 110(12), 1999, pp. 6050-6056
Citation: Jf. Mercer et Gw. Slater, Numerically exact diffusion coefficients for lattice systems with periodicboundary conditions. II. Numerical approach and applications, J CHEM PHYS, 110(12), 1999, pp. 6057-6065