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Field
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performing simulations with computational models of the Earth system on different levels of complexity scientific publication records appropriate for the experience level experience in scientific software
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software programming in C++/Python, ROS and MATLAB. Excellent command of English; German language skills are a plus. High motivation and the ability to work independently as well as within an international
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performing simulations with computational models of the Earth system on different levels of complexity scientific publication records appropriate for the experience level experience in scientific software
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conferences and the preparation of project reports. Develop and apply software tools. Documentations of software and data according to the FAIR data principles. Contributions to workshops and training
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-prüfung (BAM) is a materials research organization in Germany. Our mission is to ensure safety in technology and chemistry. We perform research and testing in materials science, materials engineering and
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large scientific collaborations by applying methods from social network analysis, large language models (LLMs), and knowledge graph technologies. As part of a small, supportive research team, you’ll have
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format. Please also ensure to use short file names. Please read the document "Information on attachment naming" and try the browser "Mozilla Firefox" or "Microsoft Edge" in the latest version should you
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short ride on the shuttle bus A fully funded Post-Doc position within the DFG Priority Program DEFORM, with opportunities for collaboration and exchange across a network of related projects Fieldwork
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Max Planck Institute for Nuclear Physics, Heidelberg | Heidelberg, Baden W rttemberg | Germany | 3 months ago
Observatory), as well as the operating facilities H.E.S.S. and HAWC. Within CTAO MPIK is leading the development of Cherenkov Cameras for the Small and Medium-sized telescopes for the Southern Site in Chile, as
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into electricity through innovative thermoelectric generators (TEGs) that perform efficiently even under small temperature differences (ΔT ≤ 30 K), we aim to redefine how IoT devices are powered. This research has