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W Henry Benner

Showing results (1-10 of 20) with videos related to

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Rapid Communications in Mass Spectrometry : RCM|July 12, 2002
A simple algorithm improves mass accuracy to 50-100 ppm for delayed extraction linear matrix-assisted laser desorption/ionization time-of-flight mass spectrometryChristopher A Hack, W Henry Benner
Angewandte Chemie (International Ed. in English)|March 27, 2001
Mass Spectrometry of an Intact Virus The authors gratefully acknowledge Jennifer Boydston for her helpful comments and suggestions. G.S. is grateful for support from the NIH (GM55775). The work at LBL was supported by the Director, Office of Energy Research, Office of Health and Environmental Research, Human Genome Program, U.S. Department of Energy under contract number DE-AC03-76SF00098Stephen D. Fuerstenau, W. Henry Benner, John J. Thomas, et al.
Angewandte Chemie (International Ed. in English)|February 17, 2001
Mass Spectrometry of an Intact Virus The authors gratefully acknowledge Jennifer Boydston for her helpful comments and suggestions. G.S. is grateful for support from the NIH (GM55775). The work at LBL was supported by the Director, Office of Energy Research, Office of Health and Environmental Research, Human Genome Program, U.S. Department of Energy under contract number DE-AC03-76SF00098Stephen D. Fuerstenau, W. Henry Benner, John J. Thomas, et al.
Angewandte Chemie (International Ed. in English)|May 2, 2018
Mass Spectrometry of an Intact VirusStephen D Fuerstenau, W Henry Benner, John J Thomas, et al.
Analytical Chemistry|January 31, 2012
Re-electrospraying splash-landed proteins and nanoparticlesW Henry Benner, Gregory S Lewis, Susanne V Hering, et al.
Journal of Proteome Research|March 4, 2006
Method to site-specifically identify and quantitate carbonyl end products of protein oxidation using oxidation-dependent element coded affinity tags (O-ECAT) and nanoliquid chromatography Fourier transform mass spectrometrySusan Lee, Nicolas L Young, Paul A Whetstone, et al.
Clinical Chemistry|June 3, 2008
Direct determination of lipoprotein particle sizes and concentrations by ion mobility analysisMichael P Caulfield, Shuguang Li, Gloria Lee, et al.
Biochimica Et Biophysica Acta|December 27, 2008
Atomic force microscopy differentiates discrete size distributions between membrane protein containing and empty nanolipoprotein particlesCraig D Blanchette, Jenny A Cappuccio, Edward A Kuhn, et al.
Mabs|October 26, 2022
Insights into ultra-low affinity lipase-antibody noncovalent complex binding mechanismsElizabeth Sara Hecht, Shrenik Mehta, Aaron T Wecksler, et al.
Journal of Lipid Research|April 12, 2008
Quantifying size distributions of nanolipoprotein particles with single-particle analysis and molecular dynamic simulationsCraig D Blanchette, Richard Law, W Henry Benner, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Rapid Communications in Mass Spectrometry : RCM|July 12, 2002
A simple algorithm improves mass accuracy to 50-100 ppm for delayed extraction linear matrix-assisted laser desorption/ionization time-of-flight mass spectrometryChristopher A Hack, W Henry Benner
Angewandte Chemie (International Ed. in English)|March 27, 2001
Mass Spectrometry of an Intact Virus The authors gratefully acknowledge Jennifer Boydston for her helpful comments and suggestions. G.S. is grateful for support from the NIH (GM55775). The work at LBL was supported by the Director, Office of Energy Research, Office of Health and Environmental Research, Human Genome Program, U.S. Department of Energy under contract number DE-AC03-76SF00098Stephen D. Fuerstenau, W. Henry Benner, John J. Thomas, et al.
Angewandte Chemie (International Ed. in English)|February 17, 2001
Mass Spectrometry of an Intact Virus The authors gratefully acknowledge Jennifer Boydston for her helpful comments and suggestions. G.S. is grateful for support from the NIH (GM55775). The work at LBL was supported by the Director, Office of Energy Research, Office of Health and Environmental Research, Human Genome Program, U.S. Department of Energy under contract number DE-AC03-76SF00098Stephen D. Fuerstenau, W. Henry Benner, John J. Thomas, et al.
Angewandte Chemie (International Ed. in English)|May 2, 2018
Mass Spectrometry of an Intact VirusStephen D Fuerstenau, W Henry Benner, John J Thomas, et al.
Analytical Chemistry|January 31, 2012
Re-electrospraying splash-landed proteins and nanoparticlesW Henry Benner, Gregory S Lewis, Susanne V Hering, et al.
Journal of Proteome Research|March 4, 2006
Method to site-specifically identify and quantitate carbonyl end products of protein oxidation using oxidation-dependent element coded affinity tags (O-ECAT) and nanoliquid chromatography Fourier transform mass spectrometrySusan Lee, Nicolas L Young, Paul A Whetstone, et al.
Clinical Chemistry|June 3, 2008
Direct determination of lipoprotein particle sizes and concentrations by ion mobility analysisMichael P Caulfield, Shuguang Li, Gloria Lee, et al.
Biochimica Et Biophysica Acta|December 27, 2008
Atomic force microscopy differentiates discrete size distributions between membrane protein containing and empty nanolipoprotein particlesCraig D Blanchette, Jenny A Cappuccio, Edward A Kuhn, et al.
Mabs|October 26, 2022
Insights into ultra-low affinity lipase-antibody noncovalent complex binding mechanismsElizabeth Sara Hecht, Shrenik Mehta, Aaron T Wecksler, et al.
Journal of Lipid Research|April 12, 2008
Quantifying size distributions of nanolipoprotein particles with single-particle analysis and molecular dynamic simulationsCraig D Blanchette, Richard Law, W Henry Benner, et al.
Pageof 2