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requirements, sector coupling and framework conditions in policy and society. The addressees are science, decision-makers from politics, industry and social actors. To answer the research questions, Jülich
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on understanding and engineering materials at the atomic scale. Using state-of-the-art electron microscopy and spectroscopy, the institute develops new experimental methods to reveal how nanoscale structures
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of data-driven neuroscience. Join the Helmholtz School for Data Science in Life, Earth and Energy ( HDS-LEE ) as a PhD candidate and work on an ambitious interdisciplinary project at the interface of data
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numerical simulations and machine learning in order to better understand and characterize active matter systems. A possible direction is to use physics-informed machine learning techniques to connect
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, we use scalable, industry-relevant processes that ensure rapid transfer of our research results to industry. Thus, our work contributes significantly to closing the gap between basic science and
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Systems Engineering (ICE-1), our focus is on developing models and algorithms for simulating and optimizing decentralized, integrated energy systems. These systems are characterized by the high spatial and
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. This has two important consequences for the Earth system and human society: On the one hand, trace substances influence the Earth’s radiation balance and climate; on the other hand, higher levels
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Spectroscopy with Electrons (ER-C) at Forschungszentrum Jülich is a center of excellence in advanced transmission electron microscopy and spectroscopy, addressing problems in materials science, solid-state
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society and are offering you the chance to actively help in shaping the change! We support you in your work with: Research & Infrastructure: You will participate in a world-leading international research
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Infrastructure? No Offer Description Area of research: PHD Thesis Job description:PhD Position - Quantum Computing for Power Systems Security At the Institute of Climate and Energy Systems Engineering (ICE-1), we