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Field
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novel methodology for the analysis of single-cell (multi)-omics data by incorporating existing biological knowledge into machine learning models. You will join a collaborative and internationally-oriented
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of complex thermo-mechanical behaviour (e.g., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase
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made large-scale models available to the public, which enables the integration of AI in everyday objects and tasks. As a result, the model scale is doubling yearly, causing a proportional increase in the
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, or gas turbines. This project develops robust system and component design methods, an integrated manufacturing platform, and multi-material joining techniques to efficiently produce small-scale
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. The project combines observational, experimental, and macroecological approaches across multiple spatial scales. First, regional datasets of plant phenology and multi-year collections of seed material from
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on coordinated campaigns combining synthesis and multi-scale spectroscopy. The materials, synthesized at IRCELYON with independent control of phase, doping, and defects, will be characterized there by XPS/UPS in
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Change Adaptation (CCA) simulations and activities in urban environments. The PhD project should leverage multi-scale geospatial data (remote sensing/aerial imagery, point clouds, maps, etc.) and GeoAI
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a multi-disciplinary team of mechatronics, design and automation engineers, electrochemists, process engineers, and AI/ML experts to realize self-driving laboratories towards new material discoveries
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collaborative, leading a project involving a multi-disciplinary team of mechatronics, design and automation engineers, electrochemists, process engineers, and AI/ML experts to realize self-driving laboratories
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hydropower scheduling, multi-reservoir cascade operation, hydropower participation in energy and reserve markets, and planning under high renewable variability. In this way, the project responds to the growing