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thermoplastic feedstocks for FDM printing Programming of an existing hybrid FDM printing machine, including printing and milling devices Modelling and optimization of the debinding process Simulation-based design
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applications in forecasting, system optimization, flexibility management, and resilience analysis. The work will be carried out in close collaboration with our interdisciplinary teams at both Empa and EPFL, as
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. The Urban Energy Systems Laboratory (UESL) pioneers strategies, solutions, and methods to support the development of sustainable, resilient, and equitable urban energy systems. Our work combines technology
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Our Magnetic & Functional Thin Films Group designs and fabricates magnetic and functional thin films with tailored properties arising from nanoscale effects. These materials are explored
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institution of the ETH Domain. Our Magnetic & Functional Thin Films Group designs and fabricates magnetic and functional thin films with tailored properties arising from nanoscale effects. These materials
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clarity and tissue compatibility. In the frame of this project, you will work with a team of scientists with backgrounds in chemistry and cell biology as well as with clinical partners on the development
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delivery of biologics while maintaining optical clarity and tissue compatibility. In the frame of this project, you will work with a team of scientists with backgrounds in chemistry and cell biology as
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thin films for emerging technologies. By combining state of the art physical vapor deposition, high throughput experimentation and data science, we develop thin films with enhanced performance and
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. Empa is a research institution of the ETH Domain. Your tasks You will work on applied research and fundamental projects funded by InnoSuisse and the Swiss National Science Foundation on simulations
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. Our Laboratory for Mechanics of Materials and Nanostructures is looking for a highly motivated candidate. Post-doc in Simulations of Thin Film Growth Your tasks You will work on applied research and