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Cieplak

Showing results (111-120 of 418) with videos related to

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Infection and Immunity|November 11, 1992
Altered synthetic response of Campylobacter jejuni to cocultivation with human epithelial cells is associated with enhanced internalizationM E Konkel, W Cieplak
The Journal of Chemical Physics|December 3, 2005
Mechanical unfolding of ubiquitin moleculesMarek Cieplak, Piotr E Marszalek
The Journal of Chemical Physics|December 3, 2005
Thermal unfolding of proteinsMarek Cieplak, Joanna I Sułkowska
Plos One|June 21, 2013
Nanoindentation of 35 virus capsids in a molecular model: relating mechanical properties to structureMarek Cieplak, Mark O Robbins
Journal of Biological Physics|January 25, 2013
Scaling of folding properties in go models of proteinsM Cieplak, T Xuan Hoang
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|November 16, 2013
Energy landscape and dynamics of proteins: an exact analysis of a simplified lattice modelMarek Cieplak, Jayanth R Banavar
Biophysical Journal|January 14, 2003
Universality classes in folding times of proteinsMarek Cieplak, Trinh Xuan Hoang
Journal of Structural Biology|May 27, 2015
Large conformational fluctuations of the multi-domain xylanase Z of Clostridium thermocellumBartosz Różycki, Marek Cieplak, Mirjam Czjzek
The FEBS Journal|November 12, 2013
Structure-based analysis of thermodynamic and mechanical properties of cavity-containing proteins--case study of plant pathogenesis-related proteins of class 10Mateusz Chwastyk, Mariusz Jaskolski, Marek Cieplak
The Journal of Chemical Physics|November 23, 2017
Structural entanglements in protein complexesYani Zhao, Mateusz Chwastyk, Marek Cieplak
Pageof 42

Showing results (111-120 of 418) with videos related to

Sort By:
Pageof 42
Infection and Immunity|November 11, 1992
Altered synthetic response of Campylobacter jejuni to cocultivation with human epithelial cells is associated with enhanced internalizationM E Konkel, W Cieplak
The Journal of Chemical Physics|December 3, 2005
Mechanical unfolding of ubiquitin moleculesMarek Cieplak, Piotr E Marszalek
The Journal of Chemical Physics|December 3, 2005
Thermal unfolding of proteinsMarek Cieplak, Joanna I Sułkowska
Plos One|June 21, 2013
Nanoindentation of 35 virus capsids in a molecular model: relating mechanical properties to structureMarek Cieplak, Mark O Robbins
Journal of Biological Physics|January 25, 2013
Scaling of folding properties in go models of proteinsM Cieplak, T Xuan Hoang
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|November 16, 2013
Energy landscape and dynamics of proteins: an exact analysis of a simplified lattice modelMarek Cieplak, Jayanth R Banavar
Biophysical Journal|January 14, 2003
Universality classes in folding times of proteinsMarek Cieplak, Trinh Xuan Hoang
Journal of Structural Biology|May 27, 2015
Large conformational fluctuations of the multi-domain xylanase Z of Clostridium thermocellumBartosz Różycki, Marek Cieplak, Mirjam Czjzek
The FEBS Journal|November 12, 2013
Structure-based analysis of thermodynamic and mechanical properties of cavity-containing proteins--case study of plant pathogenesis-related proteins of class 10Mateusz Chwastyk, Mariusz Jaskolski, Marek Cieplak
The Journal of Chemical Physics|November 23, 2017
Structural entanglements in protein complexesYani Zhao, Mateusz Chwastyk, Marek Cieplak
Pageof 42