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Jonathan G Shackman

Showing results (11-20 of 34) with videos related to

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Journal of Chromatography. A|June 4, 2018
Tunable normal phase enantioselectivity of amino acid esters via mobile phase compositionAlice Yang, Jonathan G Shackman, Yun K Ye
Bioanalysis|November 19, 2010
Gradient counterflow electrophoresis methods for bioanalysisChandni A Vyas, Paul M Flanigan, Jonathan G Shackman
Journal of Chromatography. A|July 3, 2004
High-throughput automated post-processing of separation dataJonathan G Shackman, Christopher J Watson, Robert T Kennedy
Journal of Chromatography. A|May 12, 2023
Trapping mode two-dimensional liquid chromatography for quantitative low-level impurity enrichment in pharmaceutical developmentZiqing Lin, Qinggang Wang, Yiyang Zhou, et al.
Lab on a Chip|October 2, 2010
2D separations on a 1D chip: gradient elution moving boundary electrophoresis-chiral capillary zone electrophoresisDavid Ross, Jonathan G Shackman, Jason G Kralj, et al.
Analytical Chemistry|July 10, 2007
Temperature gradient focusing with field-amplified continuous sample injection for dual-stage analyte enrichment and separationMatthew S Munson, Grégoire Danger, Jonathan G Shackman, et al.
Journal of Chromatography. A|July 23, 2008
Gradient elution isotachophoresis with direct ultraviolet absorption detection for sensitive amino acid analysisManasa Mamunooru, Ronald J Jenkins, Nejea I Davis, et al.
Analytical Chemistry|May 30, 2009
Capillary and microfluidic gradient elution isotachophoresis coupled to capillary zone electrophoresis for femtomolar amino acid detection limitsNejea I Davis, Manasa Mamunooru, Chandni A Vyas, et al.
Electrophoresis|September 1, 2006
Quantitative temperature gradient focusing performed using background electrolytes at various pH valuesJonathan G Shackman, Matthew S Munson, Cheuk-Wai Kan, et al.
Analytical Chemistry|December 1, 2005
Microfluidic electrophoresis chip coupled to microdialysis for in vivo monitoring of amino acid neurotransmittersZechariah D Sandlin, Minshan Shou, Jonathan G Shackman, et al.
Pageof 4

Showing results (11-20 of 34) with videos related to

Sort By:
Pageof 4
Journal of Chromatography. A|June 4, 2018
Tunable normal phase enantioselectivity of amino acid esters via mobile phase compositionAlice Yang, Jonathan G Shackman, Yun K Ye
Bioanalysis|November 19, 2010
Gradient counterflow electrophoresis methods for bioanalysisChandni A Vyas, Paul M Flanigan, Jonathan G Shackman
Journal of Chromatography. A|July 3, 2004
High-throughput automated post-processing of separation dataJonathan G Shackman, Christopher J Watson, Robert T Kennedy
Journal of Chromatography. A|May 12, 2023
Trapping mode two-dimensional liquid chromatography for quantitative low-level impurity enrichment in pharmaceutical developmentZiqing Lin, Qinggang Wang, Yiyang Zhou, et al.
Lab on a Chip|October 2, 2010
2D separations on a 1D chip: gradient elution moving boundary electrophoresis-chiral capillary zone electrophoresisDavid Ross, Jonathan G Shackman, Jason G Kralj, et al.
Analytical Chemistry|July 10, 2007
Temperature gradient focusing with field-amplified continuous sample injection for dual-stage analyte enrichment and separationMatthew S Munson, Grégoire Danger, Jonathan G Shackman, et al.
Journal of Chromatography. A|July 23, 2008
Gradient elution isotachophoresis with direct ultraviolet absorption detection for sensitive amino acid analysisManasa Mamunooru, Ronald J Jenkins, Nejea I Davis, et al.
Analytical Chemistry|May 30, 2009
Capillary and microfluidic gradient elution isotachophoresis coupled to capillary zone electrophoresis for femtomolar amino acid detection limitsNejea I Davis, Manasa Mamunooru, Chandni A Vyas, et al.
Electrophoresis|September 1, 2006
Quantitative temperature gradient focusing performed using background electrolytes at various pH valuesJonathan G Shackman, Matthew S Munson, Cheuk-Wai Kan, et al.
Analytical Chemistry|December 1, 2005
Microfluidic electrophoresis chip coupled to microdialysis for in vivo monitoring of amino acid neurotransmittersZechariah D Sandlin, Minshan Shou, Jonathan G Shackman, et al.
Pageof 4