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Field
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research in the design, fabrication, and testing of integrated photonic devices for applications in quantum interfaces and sensing. The role provides the opportunity to work within a large, interdisciplinary
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 2 months ago
project partners across marine ecology, fisheries science, data science, Indigenous/local knowledge interfaces, and science-policy processes Your Profile A PhD in natural sciences Strong background in
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Department of Electronic Systems employs more than 200 people, of which about 90 are PhD students, and about 40 % of all employees are internationals. In total, it has more than 600 students in its BSc and MSc
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impact. Our team leverages data pipelines to quantify data centers’ electricity and water use, emissions, and air pollution exposure and health impacts. The overarching goal is to develop an interactive
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have: you will own the bacterial side of the project. You will work with our full infrastructure for vesicle assembly, synthesis and interaction analysis, with access to IBEC’s BSL-2 facilities, and in
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sustainable energy technologies. About us The Division of Chemical Physics conducts internationally recognized research at the interface of physics, chemistry, materials science, and data science. Our research
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College London. Our research looks at how we can apply Supramolecular Chemistry in Biological settings. Supramolecular Chemistry is the study of intermolecular, non-covalent interactions. These non-covalent
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technologies, data science, and research software engineering, a. This position offers the opportunity to work in a world-renowned research institute alongside faculty, software engineers, PhD students, and
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the interface of machine learning and biology, developing innovative machine learning methods for single-cell data analysis (tools developed by the team: https://github.com/cantinilab). Single-cell high
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their manifestation across a broad range of strongly correlated materials. More broadly, the project builds on a background of fundamental questions of ultrafast light–matter interaction in condensed-matter systems