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Gary W Slater

Showing results (41-50 of 72) with videos related to

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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 28, 2010
Mapping the variation of the translocation α scaling exponent with nanopore widthHendrick W de Haan, Gary W Slater
The Journal of Chemical Physics|January 3, 2020
Voltage-driven translocation: Defining a capture radiusLe Qiao, Maxime Ignacio, Gary W Slater
The Journal of Chemical Physics|June 7, 2012
Using an incremental mean first passage approach to explore the viscosity dependent dynamics of the unbiased translocation of a polymer through a nanoporeHendrick W de Haan, Gary W Slater
The Journal of Chemical Physics|March 15, 2013
Translocation of a polymer through a nanopore modulated by a sticky siteHendrick W de Haan, Gary W Slater
Electrophoresis|December 31, 2013
Can gel concentration gradients improve two-dimensional DNA displays?David Sean, Yixuan E Wang, Gary W Slater
ACS Macro Letters|May 21, 2022
Electrophoretic Mobility of Polyelectrolytes within a Confining WellTyler N Shendruk, Martin Bertrand, Gary W Slater
Biophysical Journal|September 26, 2003
Solid phase DNA amplification: a simple Monte Carlo Lattice modelJean-Francois Mercier, Gary W Slater, Pascal Mayer
Electrophoresis|July 13, 2002
Electrophoresis in the presence of gradients: I. Viscosity gradientsSteve Guillouzic, Laurette C McCormick, Gary W Slater
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 5, 2009
Biased random walks on a lattice: exact numerical method to study the effect of alternating fields in disordered and asymmetric systems of obstaclesFrancis A Torres, Michel G Gauthier, Gary W Slater
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 14, 2015
Using a Péclet number for the translocation of a polymer through a nanopore to tune coarse-grained simulations to experimental conditionsHendrick W de Haan, David Sean, Gary W Slater
Pageof 8

Showing results (41-50 of 72) with videos related to

Sort By:
Pageof 8
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|September 28, 2010
Mapping the variation of the translocation α scaling exponent with nanopore widthHendrick W de Haan, Gary W Slater
The Journal of Chemical Physics|January 3, 2020
Voltage-driven translocation: Defining a capture radiusLe Qiao, Maxime Ignacio, Gary W Slater
The Journal of Chemical Physics|June 7, 2012
Using an incremental mean first passage approach to explore the viscosity dependent dynamics of the unbiased translocation of a polymer through a nanoporeHendrick W de Haan, Gary W Slater
The Journal of Chemical Physics|March 15, 2013
Translocation of a polymer through a nanopore modulated by a sticky siteHendrick W de Haan, Gary W Slater
Electrophoresis|December 31, 2013
Can gel concentration gradients improve two-dimensional DNA displays?David Sean, Yixuan E Wang, Gary W Slater
ACS Macro Letters|May 21, 2022
Electrophoretic Mobility of Polyelectrolytes within a Confining WellTyler N Shendruk, Martin Bertrand, Gary W Slater
Biophysical Journal|September 26, 2003
Solid phase DNA amplification: a simple Monte Carlo Lattice modelJean-Francois Mercier, Gary W Slater, Pascal Mayer
Electrophoresis|July 13, 2002
Electrophoresis in the presence of gradients: I. Viscosity gradientsSteve Guillouzic, Laurette C McCormick, Gary W Slater
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 5, 2009
Biased random walks on a lattice: exact numerical method to study the effect of alternating fields in disordered and asymmetric systems of obstaclesFrancis A Torres, Michel G Gauthier, Gary W Slater
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 14, 2015
Using a Péclet number for the translocation of a polymer through a nanopore to tune coarse-grained simulations to experimental conditionsHendrick W de Haan, David Sean, Gary W Slater
Pageof 8