Difference between revisions of "David Beyer"
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== Teaching == | == Teaching == | ||
+ | * [https://www2.icp.uni-stuttgart.de/~icp/Simulation_Methods_in_Physics_I_WS_2022/2023 Simulation Methods in Physics I] (WS 22/23) | ||
* [https://www2.icp.uni-stuttgart.de/~icp/Simulation_Methods_in_Physics_II_SS_2022 Simulation Methods in Physics II] (SS 22) | * [https://www2.icp.uni-stuttgart.de/~icp/Simulation_Methods_in_Physics_II_SS_2022 Simulation Methods in Physics II] (SS 22) | ||
* [https://www2.icp.uni-stuttgart.de/~icp/Hauptseminar_Porous_Media_SS_2021 Hauptseminar "Porous Media"] (SS 21) | * [https://www2.icp.uni-stuttgart.de/~icp/Hauptseminar_Porous_Media_SS_2021 Hauptseminar "Porous Media"] (SS 21) |
Revision as of 22:20, 21 July 2022
David Beyer
PhD Student
PhD Student
Office: | 01.039 |
---|---|
Fax: | +49 711 685-63658 |
Email: | dbeyer _at_ icp.uni-stuttgart.de |
Address: | David Beyer Institute for Computational Physics Universität Stuttgart Allmandring 3 70569 Stuttgart Germany |
Publications
2022
-
Jonas Landsgesell, David Beyer, Pascal Hebbeker, Peter Košovan, Christian Holm.
The pH-Dependent Swelling of Weak Polyelectrolyte Hydrogels Modeled at Different Levels of Resolution.
Macromolecules 55(8):3176–3188, 2022.
[PDF] (3.8 MB) [Preprint] [DOI] -
David Beyer, Jonas Landsgesell, Pascal Hebbeker, Oleg Rud, Raju Lunkad, Peter Košovan, Christian Holm.
Correction to “Grand-Reaction Method for Simulations of Ionization Equilibria Coupled to Ion Partitioning”.
Macromolecules 55(3):1088, 2022.
[PDF] (523 KB) [DOI]
Journal Covers
Posters
2021
Master Thesis
Title: Coarse-Grained Computer Simulations of Weak Polyelectrolyte Hydrogels, Stars and Brushes
2021, Institute for Computational Physics, Stuttgart
Bachelor Thesis
Title: Controlling Pattern Formation in the Confined Schnakenberg Model
2019, Max Planck Institute for Intelligent Systems, Stuttgart
Teaching
- Simulation Methods in Physics I (WS 22/23)
- Simulation Methods in Physics II (SS 22)
- Hauptseminar "Porous Media" (SS 21)
- Computergrundlagen (WS 20/21)
- Grundlagen der Experimentalphysik II (SS 19)
- Grundlagen der Experimentalphysik I (WS 18/19)