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Are you interested in green energy, and do you want to contribute to the development of the future technologies for the green transition? At the Department of Biological & Chemical Engineering (BCE
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The project’s focus will be on modeling novel silicone polymers and elastomers and developing mechanical design for storage of energy in the form of large elastic deformations. A close collaboration with chemists
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disease, with a strong focus on fibrosis and inflammation. Over the years, we have developed an advanced translational toolkit, including human precision-cut tissue slices, a unique organotypic model
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research activities within POLIMA. The position is available starting 1 January 2026. The successful candidate will work on developing semi-analytical and numerical techniques to simulate electron-beam
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(RF) and microwave-based heating systems for magnetic confinement plasma devices, along with a solid theoretical understanding of wave propagation in plasmas. Hands-on experience with the development
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to the overarching goal of the project. The tasks include selecting or developing suitable solvers, conducting the simulations, analyzing the results, and disseminating them in form of publications, presentations and
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resonators. Expected start date and duration of employment This is a 2–year position from 1 January 2026 or as soon as possible. The aim of the project is to develop “nanoguitar” optomechanical resonators
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engineering in Europe. The department conducts research, development & scientific advice and provides educational programs and service to society. We are working to develop new environmentally friendly and
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variability, and disturbances (e.g., droughts, floods, wildfires) influence carbon sequestration, GHG fluxes, and ecosystem stability in restored wetlands. Your work will contribute to the development of robust
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on anti-corrosive coatings mainly covers development of novel and advanced anti-corrosive coatings, non-destructive coating performance evaluation, coating integrity management, and first and foremost