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Field
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PhD Position in Theoretical Algorithms or Graph and Network Visualization - Promotionsstelle (m/w/d)
, and no knowledge of German is required. This is a full-time PhD position with a competitive salary according to the German TV-L E13 scale (approx. €52,000–€75,000 gross per year, depending on experience
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Knowledge of renewable electricity systems and/or a background in atmospheric sciences is an advantage Experience in atmospheric/climate modeling, renewable electricity generation simulation and/or energy
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laboratories in Melbourne and Bonn, build an international network of mentors and collaborators and experience other cultures to develop a truly global perspective. The University of Bonn and the University
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-diffraction studies of complex materials and nanodevices. The candidate will perform X-ray scattering experiments with nanofocused beams to study the structure of self-assembled superlattices of nanoparticles
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influenced by doping, mechanical strain, choice of substrate or by the formation of van der Waals heterostructures. The work includes the preparation of atomically thin films and their characterization using
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Strong publication record A keen and documented interest in the research agenda of the project Experience with analysis of longitudinal data and related data management Proficiency in using Stata and/or R
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Optional requirements: background or experience in protein biochemistry and molecular cell biology research communication skills in German (can, alternatively, be learnt on the post) We offer: integration
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properties. The position is part of the Bavarian 6G Future Lab, the pilot project of which is a collaboration of 13 research teams at TUM, targeting research into novel foundational mechanisms for future 6G
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have very good knowledge of energy technology, energy economics, and energy policy You have already gained initial experience in energy system modeling You are confident in object-oriented programming
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of various electrochemical (EIS, LSV, CV, galvanostatic cycling, plating-stripping experiments), spectroscopic (NMR, FT IR, Raman, UV-VIS, XPS) and safety-related methods You investigate the interfaces between