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of combinatorial thin-film libraries. The lab is located in Denmark’s national facility for semiconductor fabrication, with very high safety standards. You will be part of the LightTrap project, funded by the Novo
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computationally efficient at simulating permanent magnet structures, and capable of leading to the globally optimal solution of the underlying design optimization problem. We aim to combine gradient-based
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-on experimentation with advanced digital fabrication, numerical modelling, material testing, and process optimization. You will work on the fabrication and mechanical characterization of composite specimens with
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than undesired routes. Solvent and additive effects will further be explored based on mechanistic insights. Your work thus will strengthen the detection and optimization of sustainable chemistry
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help advance cutting-edge bioengineering tools and contribute to the standardization and optimization of our high-throughput strain engineering and screening workflows. Responsibilities and
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cooling more reliable, and more energy-efficient by developing new ways to store and manage thermal energy. With demand flexibility, solar and wind energy can be used to an optimal extent. The Technical