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) This project takes place within the Marie Curie Doctoral Network on Soft Active Matter Microrobots for Medicine (SAM3). This doctoral network of 12 PhD candidates aims at exploring the ear-nose-throat area from
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, flavour physics, effective field theories, theories beyond the standard model and computer algebra. More details on current research activities can be found on our homepage: https://www.physik.uzh.ch/en
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at the EMPA please check the website (https://www.epfl.ch/education/phd/edmx-materials-science-and-engineering/ ). Our offer Duration: 3 years full time Starting date: From October 2026 Deadline
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communications The opportunity to pioneer innovations in the emerging field of fibre cavities with applications ranging from fundamental quantum physics to future photonic telecommunications The successful
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only to delve into modern nanofabrication and cutting edge material science, but also to actively engage in fundamental physics and quantum technology topics, in the uniquely collaborative effort to go
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, and selective forgetting, and translate these into training-recall-forgetting cycles on physical polymer films and bilayer actuators. Contribute to integrating learning materials into soft robotic
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physics-based and data-driven modeling and data-analysis skills (e.g. Python, MATLAB, or comparable tools) are an advantage High interest in interdisciplinary research Excellent communication skills and
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-impact scientific publications. Your profile Master’s degree in Materials Science, Chemistry, Chemical Engineering, Physics, Biophysics, Pharmaceutical Sciences, or a related field. Quantitative mindset
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of Chemical and Molecular Sciences of the University Zürich. You will have to fulfill some teaching duties (as defined by UZH, Department of Chemistry). Your profile The position is immediately available for a
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for a motivated and talented candidate with: • A Master's degree (or equivalent) in chemistry, biochemistry, nanoscience, physics, or a related field • Previous knowledge about nanopore experiments