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e.g., acidic or alkaline Screening of various materials and components for stability and suitability e.g., sealing, electrode or membrane materials Identification of different electrochemical setups
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05.06.2025, Wissenschaftliches Personal Are you looking for an opportunity to shape the future of quantum computing? With superconducting quantum computers on the verge, we aim to strengthen our
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materialists, electrical engineers, and computer scientists of TUD, RWTH Aachen and Gesellschaft für Angewandte Mikro- und Optoelektronik mbH (AMO ) in Aachen, Forschungszentrum Jülich (FZJ ), Max Planck
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Degree Dr rer nat (Doctor of natural sciences) Course location Münster Teaching language English Languages Courses are held in English. Mode of study Less than 50% online Programme duration 6
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Profile: University degree (M.Sc., diploma or equivalent) in materials science, engineering sciences, or physics Experience in at least one of the methods of X-ray imaging, transmission electron microscopy
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at the electrolyte/ electrode interface You participate in regular project meetings with the involved partners from industry and research Your Profile: Completed academic studies (Master) in chemistry or materials
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English Languages Courses are usually held in English. The dissertation is written in English. Mode of study Less than 50% online Programme duration 6 semesters Beginning Only for doctoral programmes: any
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highly accurate computational tools for predicting satellite features in XPS spectra of 2D framework materials. Your work will be based on the GW approximation within Green’s function theory. While the GW
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therefore teams up materialists, electrical engineers, and computer scientists of TUD, RWTH Aachen and Gesellschaft für Angewandte Mikro- und Optoelektronik mbH ( AMO ) in Aachen, Forschungszentrum Jülich
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Max Planck Institute for Solid State Research • | Stuttgart, Baden W rttemberg | Germany | 1 day ago
semester in EUR None Combined Master's degree / PhD programme No Joint degree / double degree programme No Description/content The overarching goal of the Max Planck Graduate Center for Quantum Materials is