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Mohamed Laradji

Showing results (1-10 of 42) with videos related to

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The Journal of Chemical Physics|July 21, 2004
A Monte Carlo study of fluctuating polymer-grafted membranesMohamed Laradji
The Journal of Chemical Physics|July 23, 2004
A Langevin dynamics study of mobile filler particles in phase-separating binary systemsMohamed Laradji
The Journal of Chemical Physics|July 9, 2021
Spatial arrangements of spherical nanoparticles on lipid vesiclesEric J Spangler, Mohamed Laradji
The Journal of Chemical Physics|March 16, 2020
Discontinuous wrapping transition of spherical nanoparticles by tensionless lipid membranesEric J Spangler, Mohamed Laradji
Physical Review Letters|December 17, 2004
Dynamics of domain growth in self-assembled fluid vesiclesMohamed Laradji, P B Sunil Kumar
The Journal of Chemical Physics|February 13, 2008
Prospects of nanorods as an emulsifying agent of immiscible blendsMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|December 27, 2005
Domain growth, budding, and fission in phase-separating self-assembled fluid bilayersMohamed Laradji, P B Sunil Kumar
The Journal of Chemical Physics|July 7, 2007
Microphase separation induced by interfacial segregation of isotropic, spherical nanoparticlesMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|January 26, 2010
Dissipative particle dynamics simulation of the interplay between spinodal decomposition and wetting in thin film binary fluidsMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|November 20, 2004
Nanospheres in phase-separating multicomponent fluids: a three-dimensional dissipative particle dynamics simulationMohamed Laradji, Michael J A Hore
Pageof 5

Showing results (1-10 of 42) with videos related to

Sort By:
Pageof 5
The Journal of Chemical Physics|July 21, 2004
A Monte Carlo study of fluctuating polymer-grafted membranesMohamed Laradji
The Journal of Chemical Physics|July 23, 2004
A Langevin dynamics study of mobile filler particles in phase-separating binary systemsMohamed Laradji
The Journal of Chemical Physics|July 9, 2021
Spatial arrangements of spherical nanoparticles on lipid vesiclesEric J Spangler, Mohamed Laradji
The Journal of Chemical Physics|March 16, 2020
Discontinuous wrapping transition of spherical nanoparticles by tensionless lipid membranesEric J Spangler, Mohamed Laradji
Physical Review Letters|December 17, 2004
Dynamics of domain growth in self-assembled fluid vesiclesMohamed Laradji, P B Sunil Kumar
The Journal of Chemical Physics|February 13, 2008
Prospects of nanorods as an emulsifying agent of immiscible blendsMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|December 27, 2005
Domain growth, budding, and fission in phase-separating self-assembled fluid bilayersMohamed Laradji, P B Sunil Kumar
The Journal of Chemical Physics|July 7, 2007
Microphase separation induced by interfacial segregation of isotropic, spherical nanoparticlesMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|January 26, 2010
Dissipative particle dynamics simulation of the interplay between spinodal decomposition and wetting in thin film binary fluidsMichael J A Hore, Mohamed Laradji
The Journal of Chemical Physics|November 20, 2004
Nanospheres in phase-separating multicomponent fluids: a three-dimensional dissipative particle dynamics simulationMohamed Laradji, Michael J A Hore
Pageof 5