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. Together with our team of experienced scientists, postdocs and PhD students, you will develop materials that contribute to the development of the next generation of bio-based hybrid materials. The goal
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. Together with our team of experienced scientists, postdocs and PhD students, you will develop materials that contribute to the development of the next generation of advanced hydrogels for wound care
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with our team of experienced scientists, postdocs and PhD students, you will develop materials that contribute to the development of the next generation of sustainable biocomposite materials. This project is
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energy commitment, and the ability to tolerate frustration. You will work in a highly integrated way as part of a team, while you will also need to push your project forward. We offer you We
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layers, thorough FLA processing, and extensive materials characteri-zation using XRD, electron microscopies, TOF-SIMS, electrochemical methods, etc. Modeling and simulations should help us to explain
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of the technically relevant quantities, such as aerodynamic forces or power output, exploratory data analyses to bridge the gap between our observations and understanding of the development and interaction of vortices
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are looking for a highly motivated candidate with a self-organized and solution-oriented work attitude. Strong communication and organizational skills, the ability to work in teams and a commitment to a
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. Empa is a research institution of the ETH Domain. At Empa’s Centre for X-ray Analytics, we investigate bio-nano assemblies from lipid nanoparticles (LNPs) to polymer-based nanosystems using powerful
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, Electron Microscopy, and Numerical Simulations. Your research will contribute to the development of innovative metamaterials with hydrogel-ceramic nanocomposites base materials that feature tunable
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the public square to social media and across university campuses, defiance takes new forms of symbolic critique. In the project “Aspirational Urbanism and the Recodification of Defiance (ASPIRA)”, recognizing