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(PDF) Characterization of MIPS in a suspension of repulsive active Brownian particles through dynamical features | Francisco Alarcón Oseguera - Academia.edu Academia.edu no longer supports Internet Explorer. To browse Academia.edu and the wider internet faster and more securely, please take a few seconds to upgrade your browser. ×Close Log In Log in with Facebook Log in with Google or Email Password Remember me on this computer or reset password Enter the email address you signed up with and we'll email you a reset link. Need an account? Click here to sign up Log InSign Up Log In Sign Up more Job Board About Press Blog People Papers Terms Privacy Copyright We're Hiring! Help Center less Expand PDF Free PDF Expand PDF Free PDF Expand PDF Free PDF Expand PDF Free PDF Characterization of MIPS in a suspension of repulsive active Brownian particles through dynamical features by Francisco Alarcón Oseguera The Journal of Chemical Physics Date added: 02/21/22 Engineering • Physical sciences • CHEMICAL SCIENCES Download Free PDF Download PDF PackagePDF Pack Download PDF Pack ABOUT THE AUTHOR Francisco Alarcón Oseguera Independent Researcher 29 Papers 2 Views 9 Followers Recently Francisco Alarcón has completed his PhD at University of Barcelona (UB) under the advising of Prof. Ignacio Pagonabarraga where they have developed and applied a numerical scheme to study the collective behaviour of microorganisms. They have done… Read more Recently Francisco Alarcón has completed his PhD at University of Barcelona (UB) under the advising of Prof. Ignacio Pagonabarraga where they have developed and applied a numerical scheme to study the collective behaviour of microorganisms. They have done systematic studies to understand how hydrodynamic signature affects to the emergence of collective motion. During his PhD, Francisco has learned the fluid dynamics simulation method called Lattice-Boltzmann, where he was able to carried out large scale simulations using high performance computing. Currently, he is still working with Prof. Pagonabarraga, they are studying numerical simulation of micro-swimmers. His research interests include computational modeling, mesoscopic simulation methods, high-performance computing, fluid dynamics, active matter, polymers, biophysics, and statistical physics in general. 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