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microscopic mechanisms of bacterial ECM formation. This project will uncover the hitherto unknown mechano-physico-chemical mechanisms that lead to ECM formation – the key component that cements bacterial
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Karlsruher Institut für Technologie (KIT) | Karlsruhe, Baden W rttemberg | Germany | about 5 hours ago
suitable for part-time employment. Starting date: 17.10.2025 Job description: Design, develop and apply an flexible and integrative multiscale FWI using GPU-accelerated spectral-element simulations (Salvus
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Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute • | Jena, Th ringen | Germany | 1 day ago
Zeiss Foundation. A Diploma supplement will be issued Yes Certificates for specific modules are awarded Yes International elements Specialist literature in other languages Language training provided
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-chemical mechanisms that lead to ECM formation – the key component that cements bacterial biofilms together – thus providing novel insights into their physiology. For the biophysical experiments
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Dynamic Spectroscopies Group, Technical University of Munich (TUM) | Garching an der Alz, Bayern | Germany | 2 days ago
in an international environment Ability to work with specialists from other fields, such as theoretical physics and synthetic chemistry, in an interdisciplinary project Tasks Together with a postdoc
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research and start a career as a postdoc at our institute. We offer female scientists the opportunity to participate in our TALENTA program: a comprehensive career and development program that includes
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issued Yes International elements International guest lecturers Specialist literature in other languages Projects with partners in Germany and abroad International comparisons and thematic reference
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-treatment) has a significant effect on the microstructure (grain size, alloying elements distribution, crystallographic texture), mechanical properties (hardness, yield and tensile strength) and corrosion
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rates of AM-built Mg- and Zn-alloys. The work will revolve around micro- and nanoscopic visualization of initial micro-galvanic activity upon metal contact with an aqueous electrolyte. For this, in situ
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localized corrosion measurements, including monitoring of local pH and dissolved hydrogen and oxygen concentrations at metal-electrolyte interface; gain understanding of the factors influencing the initiation