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Understanding the Collective Behaviour of Catalytically-Driven, Self-Propelled Colloids: From Fine-Grained Hydrodynamic Simulations to Effective Field-Theoretical Descriptions

Periodic Reporting for period 1 - HydroCat (Understanding the Collective Behaviour of Catalytically-Driven, Self-Propelled Colloids: From Fine-Grained Hydrodynamic Simulations to Effective Field-Theoretical Descriptions)

Période du rapport: 2015-11-16 au 2017-11-15

Shape-anisotropic model hydrodynamic swimmers.
Swimming trajectories of a swimmer between two plates.
The effect of bulk association-dissociation reactions on self-electrophoretic swimmers.
Comparison between theoretical and lattice-Boltzmann results for self-electrophoretic swimmers.
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