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Timothy W Sirk

Showing results (11-20 of 28) with videos related to

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Journal of Agricultural and Food Chemistry|August 5, 2008
Molecular dynamics study on the biophysical interactions of seven green tea catechins with lipid bilayers of cell membranesTimothy W Sirk, Eugene F Brown, Amadeu K Sum, et al.
The Journal of Chemical Physics|July 1, 2019
A coarse-grain model for entangled polyethylene melts and polyethylene crystallizationKyle Wm Hall, Timothy W Sirk, Michael L Klein, et al.
Journal of Agricultural and Food Chemistry|July 4, 2009
Molecular binding of catechins to biomembranes: relationship to biological activityTimothy W Sirk, Eugene F Brown, Mendel Friedman, et al.
Science Advances|June 7, 2023
Systematic modification of functionality in disordered elastic networks through free energy surface tailoringDan Mendels, Fabian Byléhn, Timothy W Sirk, et al.
The Journal of Physical Chemistry. B|July 2, 2020
Vapor-Deposited Glasses Highlight the Role of Density in PhotostabilityK Michael Salerno, Joseph L Lenhart, Juan J de Pablo, et al.
Polymers|February 21, 2020
Monodisperse Polymer Melts Crystallize via Structurally Polydisperse Nanoscale Clusters: Insights from PolyethyleneKyle Wm Hall, Timothy W Sirk, Simona Percec, et al.
The Journal of Chemical Physics|October 17, 2019
Divining the shape of nascent polymer crystal nucleiKyle Wm Hall, Timothy W Sirk, Simona Percec, et al.
ACS Materials Au|July 11, 2026
Crystallite Rotation Drives Strain Softening in Semicrystalline PolyethyleneKyle Wm Hall, Timothy W Sirk, Wataru Shinoda, et al.
The Journal of Chemical Physics|April 10, 2012
An enhanced entangled polymer model for dissipative particle dynamicsTimothy W Sirk, Yelena R Slizoberg, John K Brennan, et al.
Soft Matter|August 29, 2018
Parameter-free predictions of the viscoelastic response of glassy polymers from non-affine lattice dynamicsVladimir V Palyulin, Christopher Ness, Rico Milkus, et al.
Pageof 3

Showing results (11-20 of 28) with videos related to

Sort By:
Pageof 3
Journal of Agricultural and Food Chemistry|August 5, 2008
Molecular dynamics study on the biophysical interactions of seven green tea catechins with lipid bilayers of cell membranesTimothy W Sirk, Eugene F Brown, Amadeu K Sum, et al.
The Journal of Chemical Physics|July 1, 2019
A coarse-grain model for entangled polyethylene melts and polyethylene crystallizationKyle Wm Hall, Timothy W Sirk, Michael L Klein, et al.
Journal of Agricultural and Food Chemistry|July 4, 2009
Molecular binding of catechins to biomembranes: relationship to biological activityTimothy W Sirk, Eugene F Brown, Mendel Friedman, et al.
Science Advances|June 7, 2023
Systematic modification of functionality in disordered elastic networks through free energy surface tailoringDan Mendels, Fabian Byléhn, Timothy W Sirk, et al.
The Journal of Physical Chemistry. B|July 2, 2020
Vapor-Deposited Glasses Highlight the Role of Density in PhotostabilityK Michael Salerno, Joseph L Lenhart, Juan J de Pablo, et al.
Polymers|February 21, 2020
Monodisperse Polymer Melts Crystallize via Structurally Polydisperse Nanoscale Clusters: Insights from PolyethyleneKyle Wm Hall, Timothy W Sirk, Simona Percec, et al.
The Journal of Chemical Physics|October 17, 2019
Divining the shape of nascent polymer crystal nucleiKyle Wm Hall, Timothy W Sirk, Simona Percec, et al.
ACS Materials Au|July 11, 2026
Crystallite Rotation Drives Strain Softening in Semicrystalline PolyethyleneKyle Wm Hall, Timothy W Sirk, Wataru Shinoda, et al.
The Journal of Chemical Physics|April 10, 2012
An enhanced entangled polymer model for dissipative particle dynamicsTimothy W Sirk, Yelena R Slizoberg, John K Brennan, et al.
Soft Matter|August 29, 2018
Parameter-free predictions of the viscoelastic response of glassy polymers from non-affine lattice dynamicsVladimir V Palyulin, Christopher Ness, Rico Milkus, et al.
Pageof 3