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at the interface of MEMS microfabrication, scanning probe instrumentation and cryogenic measurement technology. Main responsibilities include: Design, fabrication and characterization of advanced MEMS
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nitrides. You will use synchronized HiPIMS processes to tune the properties and performance of the films. The experiments will be informed by in-situ surface and interface analysis. Your work will make use
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lab members, the group's organoid/tissue-engineered infection models (airway, gut) to prioritize physiologically relevant hits Co-supervise PhD students and contribute to method development, data
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Your position The successful candidate will lead an ambitious interdisciplinary project at the interface of immunology, neuroscience, and cancer biology. The project will investigate how neural
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synchronized HiPIMS processes to tune the properties and performance of the films. The experiments will be informed by in-situ surface and interface analysis. Your work will make use of our group's unique
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dedicated researcher with a PhD in mathematics, electrical or mechanical engineering, computer science or a related field, and a strong methodological background in machine learning. The ideal candidate has
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transfer at the liquid-solid interface. To connect materials to devices, you will prototype booster-bed reactors from mL to L scale by 3D printing and support the transfer of promising formulations toward
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of competitive funding. Your profile We seek a highly motivated and dedicated researcher with a PhD in mathematics, electrical or mechanical engineering, computer science or a related field, and a strong
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multidisciplinary group at the crossroads of engineering and biology. Our research explores materials, technology and integration of soft bioelectronic interfaces and electronic skins. We design, fabricate and
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-solid interface. To connect materials to devices, you will prototype booster-bed reactors from mL to L scale by 3D printing and support the transfer of promising formulations toward scalable, solvent-free