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Scientific Reports
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September 19, 2019
Fourier transforms for fast and quantitative Laser Speckle Imaging
J Buijs, J van der Gucht, J Sprakel
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
June 13, 2002
Statistical thermodynamics of equilibrium polymers at interfaces
J van der Gucht, N A M Besseling
Physical Review. E
|
October 15, 2016
Multiple relaxation modes in associative polymer networks with varying connectivity
M Bohdan, J Sprakel, J van der Gucht
Physical Review Letters
|
December 1, 2020
Syneresis of Colloidal Gels: Endogenous Stress and Interfacial Mobility Drive Compaction
Q Wu, J van der Gucht, T E Kodger
The Journal of Physical Chemistry. A
|
March 9, 2012
Hybrid Monte Carlo self-consistent field approach to model a thin layer of a polyelectrolyte gel near an adsorbing surface
F A M Leermakers, J Bergsma, J van der Gucht
Physical Chemistry Chemical Physics : PCCP
|
March 10, 2015
Interactions between nodes in a physical gel network of telechelic polymers; self-consistent field calculations beyond the cell model
J Bergsma, F A M Leermakers, J van der Gucht
The Journal of Chemical Physics
|
January 22, 2018
Hydrodynamically Coupled Brownian Dynamics: A coarse-grain particle-based Brownian dynamics technique with hydrodynamic interactions for modeling self-developing flow of polymer solutions
V R Ahuja, J van der Gucht, W J Briels
The Journal of Chemical Physics
|
November 24, 2016
Coarse-grained simulations for flow of complex soft matter fluids in the bulk and in the presence of solid interfaces
V R Ahuja, J van der Gucht, W J Briels
The Review of Scientific Instruments
|
February 3, 2019
Development of a multi-position indentation setup: Mapping soft and patternable heterogeneously crosslinked polymer networks
J N M Boots, R Fokkink, J van der Gucht, et al.
Journal of Chemical Theory and Computation
|
October 27, 2018
A Hybrid Monte Carlo Self-Consistent Field Model of Physical Gels of Telechelic Polymers
J Bergsma, F A M Leermakers, J M Kleijn, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 17) with videos related to
Sort By:
Page
of 2
Scientific Reports
|
September 19, 2019
Fourier transforms for fast and quantitative Laser Speckle Imaging
J Buijs, J van der Gucht, J Sprakel
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics
|
June 13, 2002
Statistical thermodynamics of equilibrium polymers at interfaces
J van der Gucht, N A M Besseling
Physical Review. E
|
October 15, 2016
Multiple relaxation modes in associative polymer networks with varying connectivity
M Bohdan, J Sprakel, J van der Gucht
Physical Review Letters
|
December 1, 2020
Syneresis of Colloidal Gels: Endogenous Stress and Interfacial Mobility Drive Compaction
Q Wu, J van der Gucht, T E Kodger
The Journal of Physical Chemistry. A
|
March 9, 2012
Hybrid Monte Carlo self-consistent field approach to model a thin layer of a polyelectrolyte gel near an adsorbing surface
F A M Leermakers, J Bergsma, J van der Gucht
Physical Chemistry Chemical Physics : PCCP
|
March 10, 2015
Interactions between nodes in a physical gel network of telechelic polymers; self-consistent field calculations beyond the cell model
J Bergsma, F A M Leermakers, J van der Gucht
The Journal of Chemical Physics
|
January 22, 2018
Hydrodynamically Coupled Brownian Dynamics: A coarse-grain particle-based Brownian dynamics technique with hydrodynamic interactions for modeling self-developing flow of polymer solutions
V R Ahuja, J van der Gucht, W J Briels
The Journal of Chemical Physics
|
November 24, 2016
Coarse-grained simulations for flow of complex soft matter fluids in the bulk and in the presence of solid interfaces
V R Ahuja, J van der Gucht, W J Briels
The Review of Scientific Instruments
|
February 3, 2019
Development of a multi-position indentation setup: Mapping soft and patternable heterogeneously crosslinked polymer networks
J N M Boots, R Fokkink, J van der Gucht, et al.
Journal of Chemical Theory and Computation
|
October 27, 2018
A Hybrid Monte Carlo Self-Consistent Field Model of Physical Gels of Telechelic Polymers
J Bergsma, F A M Leermakers, J M Kleijn, et al.
Page
of 2