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Amir Saadat

Showing results (1-10 of 5) with videos related to

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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|October 15, 2015
Matrix-free Brownian dynamics simulation technique for semidilute polymeric solutionsAmir Saadat, Bamin Khomami
The Journal of Chemical Physics|December 3, 2016
A new bead-spring model for simulation of semi-flexible macromoleculesAmir Saadat, Bamin Khomami
The Journal of Chemical Physics|May 17, 2014
Computationally efficient algorithms for incorporation of hydrodynamic and excluded volume interactions in Brownian dynamics simulations: a comparative study of the Krylov subspace and Chebyshev based techniquesAmir Saadat, Bamin Khomami
Lab on a Chip|November 24, 2020
Correction: A system for the high-throughput measurement of the shear modulus distribution of human red blood cellsAmir Saadat, Diego A Huyke, Diego I Oyarzun, et al.
Lab on a Chip|July 11, 2020
A system for the high-throughput measurement of the shear modulus distribution of human red blood cellsAmir Saadat, Diego A Huyke, Diego I Oyarzun, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|October 15, 2015
Matrix-free Brownian dynamics simulation technique for semidilute polymeric solutionsAmir Saadat, Bamin Khomami
The Journal of Chemical Physics|December 3, 2016
A new bead-spring model for simulation of semi-flexible macromoleculesAmir Saadat, Bamin Khomami
The Journal of Chemical Physics|May 17, 2014
Computationally efficient algorithms for incorporation of hydrodynamic and excluded volume interactions in Brownian dynamics simulations: a comparative study of the Krylov subspace and Chebyshev based techniquesAmir Saadat, Bamin Khomami
Lab on a Chip|November 24, 2020
Correction: A system for the high-throughput measurement of the shear modulus distribution of human red blood cellsAmir Saadat, Diego A Huyke, Diego I Oyarzun, et al.
Lab on a Chip|July 11, 2020
A system for the high-throughput measurement of the shear modulus distribution of human red blood cellsAmir Saadat, Diego A Huyke, Diego I Oyarzun, et al.
Pageof 1