38 parallel-and-distributed-computing-"DIFFER" Postdoctoral positions at Aarhus University in Denmark
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Are you interested in real-time distributed systems, IoT connectivity, and AI-driven automation? The Department of Electrical and Computer Engineering at Aarhus University invites applications for a
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interest or experience in the areas of computational thinking and working with children at different age groups. Application deadline: November 4th, 2025 at 23.59 (CET) Place of work: Dept. of
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The Section for Software Engineering and Computing Systems, at the Department of Electrical and Computer Engineering (ECE), invites applicants for a two-year postdoctoral position within the area of
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mission enabler programme under CORC, where other modelling activities will run in parallel to support and be supported by the findings of the digital twin solution. This innovative ambition is shared with
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The Section for Electrical Energy Technology at the Department of Electrical and Computer Engineering (ECE), Aarhus University, is in a phase of rapid growth in both education and research
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for Basic Research in Program Verification (CPV) include: extensions of higher-order concurrent separation logics (such as our Iris logic, see iris-project.org ), e.g., to reason about distributed systems
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, plasticizers, chemical warfare agents, and their degradation products. In addition, our research examines the sources, transport mechanisms, distribution patterns, bioaccumulation processes, and transformation
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are for different levels of decision-making. The position is for two years and will commence April 1, 2026, or soon thereafter. The position is within the research section Management and Modelling (MAMO
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. The consortium behind ArcSolution is a highly qualified and diverse team, consisting of 14 partners from 8 different nations, from a range of geographic regions, including the Arctic and other key areas
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on understanding how different excitation methods generate polarons and correlated materials in the cuprates and other quantum materials, building on our recent results in the vanadium dioxide (see Johnson et al