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of geodynamic modelling. Including, but not limited to, computing (1) mantle density anomalies and flow, (2) true polar wander, and (3) core-mantle boundary heat flux Optimise results according to observational
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flow About you: Completed university studies in physics with a PhD or a comparable qualification Track record designing, constructing, and operating reliable laser-plasma accelerators, also combining LPA
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. Expected results Synthesis and characterization of composite electrodes with increased lifetime with high ICE, specific capacity, and rate capability in half cells and high stability and energy density in
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texts for your fields and develop collaborative projects. Your participation in workshops and master classes will ensure that you are up to date with current academic discourses and will give you the
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researchers to each specific programme. The scientific focus in each section is driven by current topics in Life Sciences: collaborative research projects and graduate training groups are major contributors
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semester 2026, varies slightly with each semester) The current semester contribution can be found here: https://www.uni-giessen.de/en/org/admin/departments/b/5/studoffice/sc . Costs of living Approximately
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entire programme) Yes, compulsory Tuition fees per semester None Semester contribution 403 EUR (summer semester 2026, varies slightly with each semester) The current semester contribution can be found here