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assets, in combination with other types of power system assets (batteries, etc.). From a research perspective, this can involve techniques from algorithmic game theory and AI-based mechanism design
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for combined network design and resource pricing, incorporating fairness for different transport aspects (e.g., accessibility, emissions, safety) employ state-of-the-art metaheuristic algorithms (e.g., genetic
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will combine state-of-the-art computer vision, modeling and archived specimens to determine biotic and abiotic factors driving spatial variation in molt phenology. It will use museum genomics to recover
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/f/d, E13 TV-L, 50-75%) The position is limited for three years. Description of the project The research group of Prof. Dr. Frank Schreiber at the University of Tübingen deals with the physics
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%) The position is limited for three years. Description of the project The research group of Prof. Dr. Frank Schreiber at the University of Tübingen deals with the physics of molecular and biological materials
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of such measurements remains tentative without detailed modeling. In the current project, Prof. Mugele’s PCF group in Twente and Prof. Doblhoff-Dier’s Theoretical Electrochemistry group in Leiden team up to combine high
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methods be combined? AI Compute Paradigms: How will future AI hardware look and how will it be used? Intelligent Medical Devices: How can AI advance cybermedical systems? AI Methods for Health: How can AI
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of corrosion at the interface between metals (e.g., Ni) and molten salts (FLiNaK). These systems are gaining interest for their potential in molten salt nuclear reactors. You will combine atomistic simulations
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van Laar (University of Groningen), dr. Emar Maier (University of Groningen) and prof. dr. Jean Wagemans (University of Amsterdam). Other members of the project team are: prof. dr. Lilian Bermejo-Luque
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of technologically relevant oxide thin films. In particular, the combination of state of the art non-linear optics monitoring and electron spectroscopy in situ allows investigating the dynamics