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acoustic metamaterials. The outcome will be relevant for the development of new technologies for controlling acoustic or electromagnetic waves. Project background In contrast with acoustic metamaterials
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the development of critical thinking, data analysis, problem-solving, and project management skills while contributing to the broader academic community through publications and presentations at leading conferences
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) The Materials Theory Group in the Materials Department is recruiting one fully-funded doctoral student to work under the supervision of Prof. Claude Ederer on the development and application of advanced
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to imaging with geophysical data. Our research focuses on mathematical methods for processing, imaging, and inversion of geophysical data, the physics of wave propagation, and the development of innovative
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bachelor’s and master’s students on related topics Monitor and investigate scientific ongoing development in medical robotics Profile We are looking for highly motivated candidates with: A master’s degree in
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responsibility for her/his experiments and scientific development Applicants should hold a Master’s degree in Biology, Biomedicine, Pharmaceutical Sciences, or a related Life Science discipline The ideal candidate
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biodegradation using advanced analytical approaches. We translate our scientific insights into practice by supporting the development of next-generation biodegradable polymers and informing current and future
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professional development, but also actively contributes to positive change in society You can expect numerous benefits , such as public transport season tickets and car sharing, a wide range of sports offered by
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: collaboration partners: J. Löffler, ETH Zürich; K. Klein, Universität Zürich; R. Müller, ETH Zürich, B. Schaller, Universitätsspital Bern) focusing on the development of advanced organotypic in vitro bone models
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to advancing science and technology. Project background We are seeking a highly motivated PhD student to contribute to the further development of SimuCell3D, a high-performance C++ framework for simulating 3D