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Approach ( https://vhrz669.hrz.uni-marburg.de/ssf/ ). Understanding the mechanisms controlling subsurface flow (SSF) and the conditions under which it occurs remains a major challenge in hydrology and
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of the (computational) mechanics of solids and the finite element method and/or spectral solvers Practical experience in at least one programming language (preferably Python) and experience with the use of Unix/Linux
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of superconducting qubits to quantify performance and identify limiting physical mechanisms Perform quantum device calibrations, benchmarking, and run quantum algorithms Presenting and publishing the research
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. Their molecular behavior has profound effects on soil hydraulic properties and biome stability. However, despite advances in continuum modeling of soil and plant-water systems, the molecular-scale mechanisms
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of stacks with solid oxide cells (SOC) in electrolysis mode Electrochemical characterisation of cells during stack operation using direct and alternating current-based techniques (e.g. characteristic curves
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science, physics, computational science or similar, preferably with a specialization in the field of theory and/or simulation Strong understanding of the (computational) mechanics of solids and the finite