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Strong interest in interdisciplinary research at the interface of physics, engineering, and biomedical applications Highly desirable Experience in micro- and nanofabrication Experience in micromagnetic
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background in thin film magnetism. Prior experience in scanning probe microscopy is advantageous but not required; candidates with outstanding expertise in magnetism and a strong motivation to develop advanced
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materials, and experience with sol/gel processes, biomolecule handling and release studies high motivation to work in an interdisciplinary project excellent skills at science communication (verbal and written
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synthesizing and characterizing hydrogels/soft materials, and experience with sol/gel processes, biomolecule handling and release studies high motivation to work in an interdisciplinary project excellent skills
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Carlo based simulation approaches and continuum modelling. Verification of simulation results against experimental findings will be part of your activities. You are expected to publish your research
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, you will be encouraged to develop independent ideas, propose new concepts, and test them experimentally and/or computationally. The role is ideally suited to strengthen your pre-existing expertise and
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applicants with and without a doctoral degree will be considered. Project Focus The innovation project builds on Empa’s extensive experience in silica aerogels, aerogel composites and aerogel product
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excellent problem-solving and technical skills. Prior experience in electrochemistry and/or catalysis is a strong advantage. The successful candidate will be expected to work independently in the lab while
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experimental findings will be part of your activities. You are expected to publish your research output in high-level peer-reviewed scientific journals. Your profile You must hold a PhD in Physics, Chemistry
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: Chemical Engineering, Material Science, Mechanical Engineering, Chemistry Full proficiency in written and spoken English Demonstrated experience in two or more of the following areas: Material synthesis and