1,801 structural-engineering "https:" "https:" "https:" "https:" "https:" "Washington University in St" positions in Germany
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Chemistry, or Chemical Biology Profound knowledge of ICP-MS technology and experience in conducting metallomic analyses Background in metal biology, with an interest in applying this knowledge to microbial
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technology, offers the opportunity to write a master's thesis on the topic: In-situ analysis of UKP laser structuring in sapphire. Modern laser processes such as Selective Laser-induced Etching ( (SLE) are
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structured continuing education ( https://www.fz-juelich.de/en/judocs ) Targeted services for international employees, e.g. through our International Advisory Service The position is for a fixed term of 3,5
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₂, and magnetic Weyl semimetals). Work is computationally driven and focuses on linking quantum calculations to reduced, physics-aware spin models so that materials can be ranked and engineered for device
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greenhouse and laboratory work Very good command of written and spoken English (at least B2 level according to the CEFR: https://go.fzj.de/languagerequirements ) Our Offer: We work on the very latest issues
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with the University of Hohenheim and Senckenberg - Leibniz Institution for Biodiversity and Earth System Research (https://www.terra-cluster.org ). TERRA will develop an integrated understanding of how
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about the program (including further application instructions), please visit: https://www.mpg.de/en/max-planck-postdoc-program . To submit your application online, please visit: https
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PostDoc/Senior Scientist - Process and Plant Design in the Field of Liquid Organic Hydrogen Carriers
reactor design and efficient heat integration Collaboration with the department experimental technology testing for the implementation of processes at laboratory, miniplant, pilot, and demonstration scale
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evolution reaction (OER), a major bottleneck in current electrolysis processes, and explore stabilization strategies based on protective layers. Study the electronic structure of the hybrid catalysts and
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stabilisation of the Cr4Te5 phase. In addition to phase engineering, the project will examine how stoichiometry, structural quality and defect formation influence the potential ferroelectric functionalities