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Everyone is talking about artificial intelligence. But who is developing the necessary chips? We are, for example! Would you like to help drive the development of a new highly efficient AI hardware platform as a doctoral student? At Fraunhofer IPMS , in collaboration with renowned German and...
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This PhD project focuses on the quantitative investigation of Coulomb phases in artificial spin ice materials. The selected candidate will explore the dynamics and thermal fluctuations of magnetic
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 2 months ago
description:PhD position in "sustainable use of the Arctic marine environment" (d/x/f/m) Background Arctic communities rely on sea ice for their way of life: commuting, hunting, fishing, trapping, and other
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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
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with comparative investigations in Arctic Ice Regions - SPP1158), we aim to close these knowledge gaps using a data-mining approach. To do so, we will use in house as well as previously published 16S
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climate-neutral operations through the integration of renewable energy sources and hybrid storage systems. As part of an EU-funded research project, ICE-1 is collaborating with research groups and companies
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Systems - Jülich Systems Analysis (ICE-2) is the unbiased, scientific investigation of technologies, technology paths, value chains and market ramp-ups in future energy systems, considering material
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of pollution—particularly in the world’s industrialized countries and megacities—lead to health impacts, damage to ecosystems, and crop losses. At the Institute of Climate and Energy Systems - Troposphäre (ICE-3
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. This is precisely where this doctoral thesis comes in. At the Institute of Climate and Energy Systems – Jülich System Analysis (ICE-2), we are researching the systemic prerequisites for a successful energy
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, aggregation, adsorption, confinement effects), active polymeric systems, non-equilibrium relaxation (coarsening and ageing), ice and water models, and quantum phase transitions. The emphasis of the school is on