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can significantly improve the treatment and outcome of oncological patients. Project background You will contribute to the design and implementation of machine-learning-based sparse 3D image
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6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
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vehicles. Another research focus is on solid-state pulse modulators for medical applications (computer tomography/cancer treatment) and accelerators (CERN). For the design and optimisation of the various
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6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
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candidate will work at the interface of integrated photonics, nonlinear optics, and MIR spectroscopy, contributing to the design, simulation, fabrication, and experimental characterization of photonic devices
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description Develop embedded firmware for our modular rehabilitation platform ax|ReCover. Design, implement and validate reliable sensor acquisition pipelines Integrate biomechanical and physiological sensors
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6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
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will explore how architecture influences collective contact behavior, aiming to develop design principles. The work will combine physics-based numerical modeling, theoretical reasoning, and concepts from
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an emphasis on environmentally and economically efficient design and operations. Job description You will support the ESA Chair with general research-related tasks relating to ongoing projects, e.g. literature
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. Empa is a research institution of the ETH Domain. Research project on Design, synthesis, and multiscale characterization of materials for soft robotics applications (SAM3/ESR12 – soft robotics