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W Slater

Showing results (11-20 of 307) with videos related to

Pageof 31
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Electrophoresis|October 6, 2010
Physical interpretation of the L(r) parameter in the theory for the gel electrophoresis of partially denatured DNADavid Sean, Gary W Slater
Electrophoresis|October 1, 1988
Electric field gradients and band sharpening in DNA gel electrophoresisG W Slater, J Noolandi
Physical Chemistry Chemical Physics : PCCP|March 4, 2022
Capture and translocation of a rod-like molecule by a nanopore: orientation, charge distribution and hydrodynamicsLe Qiao, Gary W Slater
Electrophoresis|May 1, 1995
Electrophoretic resolution versus fluctuations of the lateral dimensions of a capillaryG W Slater, P Mayer
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|December 31, 2008
Polymer deformation in Brownian ratchets: theory and molecular dynamics simulationsMartin Kenward, Gary W Slater
Electrophoresis|January 5, 2012
Detrapping particles in gel electrophoresis: a numerical study of different pulsed field sequencesAntoine Dubé, Gary W Slater
Electrophoresis|June 1, 2012
Electrophoretic mobility of partially denatured DNA in a gel: qualitative and semiquantitative differences between bubbles and split endsDavid Sean, Gary W Slater
The Journal of Chemical Physics|February 10, 2017
Highly driven polymer translocation from a cylindrical cavity with a finite lengthDavid Sean, Gary W Slater
Differentiation; Research in Biological Diversity|January 1, 1979
Cell-free cytoplasmic polyadenylation of oogenic RNAI Slater, D W Slater
Proceedings of the National Academy of Sciences of the United States of America|April 1, 1974
Polyadenylylation and transcription following fertilizationI Slater, D W Slater
Pageof 31

Showing results (11-20 of 307) with videos related to

Sort By:
Pageof 31
Electrophoresis|October 6, 2010
Physical interpretation of the L(r) parameter in the theory for the gel electrophoresis of partially denatured DNADavid Sean, Gary W Slater
Electrophoresis|October 1, 1988
Electric field gradients and band sharpening in DNA gel electrophoresisG W Slater, J Noolandi
Physical Chemistry Chemical Physics : PCCP|March 4, 2022
Capture and translocation of a rod-like molecule by a nanopore: orientation, charge distribution and hydrodynamicsLe Qiao, Gary W Slater
Electrophoresis|May 1, 1995
Electrophoretic resolution versus fluctuations of the lateral dimensions of a capillaryG W Slater, P Mayer
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|December 31, 2008
Polymer deformation in Brownian ratchets: theory and molecular dynamics simulationsMartin Kenward, Gary W Slater
Electrophoresis|January 5, 2012
Detrapping particles in gel electrophoresis: a numerical study of different pulsed field sequencesAntoine Dubé, Gary W Slater
Electrophoresis|June 1, 2012
Electrophoretic mobility of partially denatured DNA in a gel: qualitative and semiquantitative differences between bubbles and split endsDavid Sean, Gary W Slater
The Journal of Chemical Physics|February 10, 2017
Highly driven polymer translocation from a cylindrical cavity with a finite lengthDavid Sean, Gary W Slater
Differentiation; Research in Biological Diversity|January 1, 1979
Cell-free cytoplasmic polyadenylation of oogenic RNAI Slater, D W Slater
Proceedings of the National Academy of Sciences of the United States of America|April 1, 1974
Polyadenylylation and transcription following fertilizationI Slater, D W Slater
Pageof 31