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Materials science and technology are our passion. With our cutting-edge research, Empa's around 1,100 employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. The Center for X-ray Analytics develops X-ray...
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Your position The project aims to develop novel anti-biofilm compounds that can be used to treat biofilm-related infections caused by a range of bacterial pathogens. Based on structural data demonstrating how an existing anti-biofilm compound binds to and activates its specific target in...
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and drug development. The Biozentrum is a front-line international research environment with cutting-edge research infrastructure and excellent working conditions. The position is initially for one year
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development X-ray based methods focusing on the evaluation of the structure – property relationship in applications such as biomedicine and space. In the frame of an ESA project interfacing research and
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science. Our core activities is the development X-ray based methods focusing on the evaluation of the structure – property relationship in applications such as biomedicine and space. In the frame of an ESA
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their evolution over cosmological timescales, to the prediction of observable signatures today. These predictions will be tested primarily through gamma-ray, radio, and gravitational-wave observations. The two
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polymer additive chemistry. A more recent focus of the group is the development of sustainable polymer and additives. To strengthen activities in this area, we investigate development of functional covalent
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by beam (e.g. laser light, electrons) and plasma induced processing. LAMP provides full cycle technology development, starting from novel materials, deep understanding of the background physics of beam
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responsibilities Conduct high-quality research as a co-author within one of the two projects described above Develop new ideas that advance the project's aims Contribute to grant proposal development Engage
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welds. Modelling and simulation: development of a physics-based simulation framework (e.g., phase-field modelling) to predict hydrogen-assisted crack growth and long-term mechanical integrity of steels