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equipment. You will join an international multidisciplinary team. You will apply simulation, multi-objective optimization, and data-driven analytics to evaluate and compare material intralogistics handling
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for the tasks of WP3 of the project. Activities Optimize fermentation conditions using Y. lipolytica with industrial by-products and compare production yields to synthetic media; Optimize dye extraction
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research in core/edge modeling, scenario optimization and experimental interpretation in the SPARC tokamak; lead the efforts of creating a platform to analyze experimental data in SPARC early campaign
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design. Objectives: The main objective is to support the development and validation of morphing drone prototypes by combining structural optimization, lightweight design, and experimental testing
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of the additives in phosphate ore processing. Study the interaction mechanisms between additives and mineral surfaces using surface chemistry and interfacial analysis techniques. Contribute to the optimization
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research and publication record; proven ability to independently design, execute, and optimize a broad range of fabrication processes; practical and theoretical familiarity with many process categories (e.g
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testing of model-free algorithms for real-time optimization of turbine operating conditions (e.g., yaw set points). Other projects may be assigned by the supervisor depending on skills and technical needs
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mechanism of action. Develop and optimize workflows for sample preparation, grid screening, and high-throughput image acquisition. Collaborate with computational and molecular biology teams to link structural
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concrete. Research Focus The postdoctoral researcher will lead experimental investigations into concrete materials, with emphasis on mixture design optimization and mechanical property characterization
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, mathematical finance, or optimization and is capable of actively contributing to research projects in these fields. The contract start date is flexible, beginning as early as March 1, 2026. The employment