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This gives an overview about the most important concepts of polymer physics, covering both statics and dynamics.
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This is a course in which some basic electrostatic effects are discussed, as they are relevant in both polymer and colloid physics. A central theoretical tool is the Poisson-Boltzmann equation.
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This was a long and intensive course in which I covered simulation methods like Monte Carlo, Molecular Dynamics, Brownian Dynamics, Dissipative Particle Dynamics, Lattice Boltzmann, and Multi-Particle Collision Dynamics. As these are founded in Classical Mechanics and Classical Statistical Mechanics, a crash course in these latter subjects was given as well.
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Here you find materials related to lectures that I have given. Typically these are recordings and PDF files of hand-written lecture notes.
Computer Simulations, Melbourne 2009
This was a long and intensive course in which I covered simulation methods like Monte Carlo, Molecular Dynamics, Brownian Dynamics, Dissipative Particle Dynamics, Lattice Boltzmann, and Multi-Particle Collision Dynamics. As these are founded in Classical Mechanics and Classical Statistical Mechanics, a crash course in these latter subjects was given as well.
Polymer Theory, Melbourne 2011
This is an overview of central topics of polymer theory, concerning both statics and dynamics.
Electrostatics and Soft Matter, Melbourne 2013
The lecture focuses on electrostatic effects in soft matter. Emphasis is on Poisson-Boltzmann theory, electrokinetics, and polyelectrolyte theory.
Polymer Theory, Mainz 2021
Pretty much the same course as Melbourne 2011.
Polymer Theory, Mainz 2022
... and the same one year later.
Theory of Lattice Boltzmann, Mainz 2010
This is a lecture I gave to explain the machinery of deriving Lattice Boltzmann algorithms.