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flexibility in the design of the meta-material, it is also a relatively slow process. To overcome this limitation, this project explores an alternative approach inspired by nature, namely emerging
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such as biology, medicine, chemistry, earth and environmental sciences, cultural heritage, materials and surface science, and physics. The ID19 beamline at the ESRF is a multi-purpose long (145 m) imaging
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processes. They are supervised by Prof. John Lygeros in collaboration with Dr. Efe Balta from Inspire AG and Prof. Alisa Rupenyan from the Zurich University of Applied Science (ZHAW) . Project background
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-based research on immersive modeling and the integration of auralization tools into the design process. The full-time positions span four years and are funded according to standard SNSF regulations. Upon
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power electronic systems, we develop advanced multi-physics models/digital twins/virtual prototypes at the component and system level. For a new research project on advanced high efficiency magnetic
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of their spins and charges. Our scope is to study the fundamental physics of these materials with a focus on experimental basic research, yet including the perspective on the theoretical background and on
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and charges. Our scope is to study the fundamental physics of these materials with a focus on experimental basic research, yet including the perspective on the theoretical background and on
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and charges. Our scope is to study the fundamental physics of these materials with a focus on experimental basic research, yet including the perspective on the theoretical background and on
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Functional Theory (DFT), and coarse-grain DFT to run large-scale atomic simulations of the real structure of disordered solids. Your profile Project I MSc in Physics, Chemistry, Materials Science, Mathematics