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) /COMSOL/ Abaqus etc., with a strong focus on multi-phase modeling of high-energy density heat sources, including laser-material and electron beam-material interactions Good programming skills (e.g. Python
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and FEM simulations using tools such as OpenFOAM (preferably) /COMSOL/ Abaqus etc., with a strong focus on multi-phase modeling of high-energy density heat sources, including laser-material and electron
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. Empa is a research institution of the ETH Domain. The Coating Technologies Group in Empa's Laboratory for Surface Science & Coating Technologies develops next-generation functional thin-films through
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worth living. Empa is a research institution of the ETH Domain. The Coating Technologies Group in Empa's Laboratory for Surface Science & Coating Technologies develops next-generation functional thin
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. Empa is a research institution of the ETH Domain. Our Laboratory for Advanced Fibers in St. Gallen pursues application-driven research in the field of polymers and fibers. We work towards a new
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company in Zurich. Your tasks Your tasks will include the design of testing equipment required to imitate the working mechanism of an industrial application. A significant part of this will be
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field High motivation to work in an interdisciplinary project Extensive experience with advanced cell/tissue culture work Expertise in the field of (nano)toxicology Basic knowledge in transcriptomics
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Fibers in St. Gallen pursues application-driven research in the field of polymers and fibers. We work towards a new generation of hernia repair meshes with built-in local drug-delivery strategies
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vivo relevant models for antimicrobial assessment to demonstrate the efficacy of the developed coatings under conditions closely simulating in vivo environment The work aims to advance the fundamental
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a Power-to-X technology make plasma processing a promising method to decarbonize energy-intensive industrial processes while creating sustainable products from greenhouse gases. The postdoc work will