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funded by a EU programme Reference Number 304--1-14162 Is the Job related to staff position within a Research Infrastructure? No Offer Description Join a research team developing state-of-the-art open
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beyond the Standard Model of particle physics to the interpretation of cosmological and astrophysical data on the origin, composition, and evolution of the universe. At present, our studies concentrate
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revolution in the field of legged robotics and their successful custom deployment in various applications. Project overview The aim of this project is to develop a software framework for AI based Holistic Co
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on-wafer characterization of high-frequency transistor devices, including bias-dependent S-parameters, pulsed I/V, and load-pull measurements Develop empirical device models that capture static, dynamic and
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project focuses on developing and refining advanced organ-on-chip technologies to study and optimize nanoparticle-based delivery systems in biologically relevant environments. The project is strongly
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to the development of advanced methods for electrode fabrication, with a particular emphasis on electrophoretic deposition. You will also conduct electrochemical testing under applied magnetic fields to improve
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this role, you will focus on developing catalysts and carrying out detailed characterization experiments that can support the future production of electrofuels and electrochemicals. You will be part of a
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across multiple applications, including: High-temperature corrosion prevention Development of advanced fuel cells Recycling of valuable materials Innovations in nuclear energy Our collaborative and dynamic
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Join us to pioneer next-generation generative models that accelerate molecular dynamics. We seek a postdoctoral researcher to develop AI surrogates for molecular dynamics (MD), slashing
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expected to be independent, develop original ideas, and find new ways of tackling research challenges. You will communicate research results at international conferences as well as in scientific journals