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of radionuclides on clay mineral surfaces using DFT Kinetic Monte Carlo simulations with activation energy barriers as input to simulate large-scale interactions of nuclides with surfaces Preparation and
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scattering experiments at world leading large-scale X-ray and neutron facilities (e.g. PETRA III and EuXFEL in Hamburg, ESRF and ILL in Grenoble and others), analysis of the experimental data Presentation
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at the University of Tübingen. Students in the group receive excellent training and supervision and the opportunity to conduct research at large-scale international facilities, such as synchrotron and neutron sources
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. It is not feasible to scan the full volume of such samples at the highest desired resolution. Therefore, we require an imaging scheme that acquires relevant features at different length scales and
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, molecular genetic and cell biological tools to understand the role that silicanins, a large family of novel transmembrane proteins, is involved in governing silica bio-morphogenesis. The project involves a
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to data protection: Your data protection rights, the purpose for which your data will be processed, as well as further information about data protection is available to you on the website: https://tu
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machine‑learning or data‑analytics tools High‑level programming skills (Python, R, Julia) to build, test, and optimize models of geochemical systems Interest in large‑scale computational simulations (e.g
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the TVöD-Bund can be found on the BMI website: https://go.fzj.de/bmi.tvoed (pay scale table on page 66 of the PDF download). The position is for a fixed term of three years. Support for international