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arbitrary complexity and shape at the sub-nanometer scale. Such structures can be used to construct artificial cell mimics and new materials. A scaffold-free DNA tile assembly is a programmable method for the
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of Chemistry (Inorganic Chemistry). Our group investigates fundamental questions in bioinorganic chemistry using advanced spectroscopic techniques to understand the structure and reactivity of complex metal
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that span a broad range of modern physical chemistry, materials science, and biochemistry questions. Our qualification program, measures for recruiting, gender equality and family friendliness are equally
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on methods development in machine learning, uncertainty quantification and high performance computing with context of applications from the natural sciences, engineering and beyond. It is embedded in
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of the experimental data Presentation of the obtained scientific results on conferences and in publications Requirements Master’s degree in physics or chemistry, or equivalent Interest in materials science Good written
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, Diploma or comparable university degree) in biology, biochemistry, biotechnology, veterinary medicine, pharmacology, toxicology or a comparable field. Enthusiasm for scientific work and writing articles
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the future of advanced air mobility through involvement in innovative drone-related projects that bridge technology, urban planning, material sciences, sensors and aviation. With the upcoming Smart Mobility
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Description This PhD project builds on ongoing research projects in the area of photocatalytic membranes at IAMT. Current work will be expanded to (select) novel materials and membrane preparation
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with the laser-based material processing experts at the Institut für Strahlwerkzeuge (IFSW) at the University of Stuttgart. The fabricated gas-filled cells will then be investigated in the 5th Institute
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Description This PhD project builds on ongoing research projects in the area of Nanofiltration for Contaminant Removal at IAMT. Novel nanofiltration membrane materials will be examined with