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the gap from pore scale physics to engineering-scale simulation tools. Sounds interesting? Then this position might just be the one for you! Information Porous media play a central role in many technologies
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use. Frequently, even higher resolutions do not capture dynamic drivers. This mismatch limits the utility of climate projections for predicting localized glacier change. This project aims to close
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researchers worldwide. By joining us, you will be part of a vibrant community of more than 60 researchers including faculty members, postdocs and PhDs working on diverse topics in the field of dynamical systems
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related to staff position within a Research Infrastructure? No Offer Description Driven by science and eager to advance neurobiological research? With a Master’s in Molecular (Neuro)biology, Biomedical
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using microbiological and molecular approaches. Communicate research findings through scientific publications and public engagement activities Contribute to teaching activities, for example through
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-learning (ML)- driven and physics-based computational workflows to screen large molecular libraries, predict key electrochemical and physicochemical properties, and deliver ranked shortlists of high[1
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Neuromorphic Quantum-Inspired Optimisation and Simulation (NEQIOS) together with companies IBM and Enlightra and universities Oxford, Heidelberg and Radboud. NEQIOS aims to create a new class of brain-inspired
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Vacancies PhD position on Neuromorphic Quantum-Inspired Optimisation and Simulation Key takeaways This position is part of the European EIC Pathfinder Open project Neuromorphic Quantum-Inspired
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adopts a transdisciplinary approach to study cooperation, resistance, and other dynamics in neighborhoods, energy hubs, and communities. By integrating simulations, participatory methods, and co-creation
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. The program develops scientific knowledge, models and simulation tools to support marine spatial planning in a multi-stakeholder co-creation process. You will join a team of 17 PhDs and postdocs across