45 soil-structure-interaction Postdoctoral research jobs at Technical University of Denmark
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scientific advice of the highest quality within building design and processes, building construction and safety, building energy and installation, solid mechanics, fluid mechanics, materials technology
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of Denmark (DTU). The position is at the forefront of yeast synthetic biology and immunology, aiming at engineering Saccharomyces cerevisiae cells to interact with human immune cells for developing next
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focus on charge injection, ion transfer, and structural dynamics in realistic and model systems for battery materials. The position will span experimental efforts at large scale X-ray facilities, handling
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of catalysts and processes for upgrading biomass fast pyrolysis oil to a higher quality fuel that can be used for e.g. ships and ultimately for aviation and land transport. The project is conducted in close
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experimental setups, take initiative and leadership, and secure progress of the experimental work on a daily basis. Essential is your internal drive to achieve significant and ground-breaking results. Your key
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of the highest quality within building design and processes, building construction and safety, building energy and services, solid mechanics, fluid mechanics, materials technology, manufacturing engineering
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-computer interaction, social networks, fairness, and data ethics. Our research is rooted in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis
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handling, from collection to analysis - Structured working style and the ability to multitask with attention to detail - A positive mindset and willingness to take on both routine and complex tasks As a
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forward the emerging field of Geophotonics — a novel paradigm that explores the interaction of light with natural crystalline materials to decode the dynamics of Earth's surface. The positions offer a
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-small silicon nanocavities [Babar2023, Rosiek2023] with extreme light-matter interactions. We aim to combine fundamental theory, device design, and our unrivalled capabilities in high-resolution silicon