322 development-"https:"-"https:"-"https:"-"https:"-"https:" positions in Switzerland
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developed powerful technology platforms in the field of biomedicine and genomics over the past years, also leading to the establishment of two startup companies (www.veraxa.com and www.thera-me.ch ). Having
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academic conferences and present your work Benefit from ETH Zurich’s excellent research infrastructure, course offerings, and career development programs Enjoy numerous benefits , such as public transport
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processing, machine learning, and human-computer interaction. The goal of this PhD is to develop neuromotor interfaces for dexterous robot teleoperation using two sensing modalities: 1) surface
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develop novel learning-based control and policy optimization techniques. We're looking for a skilled machine learning (ML) engineer to develop cutting-edge AI algorithms for digital twin applications in
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unexplored solution spaces to the climate crisis and develops a blueprint for actionable climate research worldwide. NCCR CLIM+ broadly communicates and shares knowledge, and trains a new generation of experts
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data se t collected using sensors originally developed for mobile robotics applications. Job description Particular focus will be placed on deriving velocity and flow depth estimates at unprecedented
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100%, Zurich, fixed-term Prof. Dr. Sereina Riniker's group for Computational Chemistry at the Institute of Molecular Physical Science is interested in the development of methodology for classical
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80%-100%, Zurich, fixed-term The Soft Robotics Lab at ETH Zurich builds robots that are soft, musculoskeletal, and partly alive. We develop artificial muscles, dexterous robotic hands, biohybrid
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data. Perform cross-species (human–mouse) data integration to identify conserved and divergent cellular and molecular signatures of PAD. Apply and further develop computational tools for cell-cell
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establishing a new laboratory for laser cooling, trapping, and imaging ultracold rubidium atoms in optical lattices. With newly developed methods, such as high-fidelity collisional atom-atom interactions, we