National Repository of Grey Literature 2 records found  Search took 0.01 seconds. 
Computer Modelling of Macromolecules
Khirnova, Oleksandra ; Uhlík, Filip (advisor) ; Jirsák, Jan (referee)
In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories.
Computer Modelling of Macromolecules
Khirnova, Oleksandra ; Uhlík, Filip (advisor) ; Jirsák, Jan (referee)
In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories. In the present work we study diffusion of linear and cyclic polymers. We run simulations using Brownian dynamics in θ-solvent and good solvent with several hydrodynamic models. Obtained results were compared with existing theories.

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