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experiments to investigate the activity and specificity of selected proteases. 3. Advanced fluorescence measurements and quantitative imaging Performing and optimizing fluorescence-based measurements, including
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well as performing biochemical experiments to investigate the activity and specificity of selected proteases. 3. Advanced fluorescence measurements and quantitative imaging Performing and optimizing fluorescence-based
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team working across electrolyzers, Power-to-X systems, power electronics, control, digital twins, and energy-system optimization, in close collaboration with the Technical University of Denmark (DTU
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: - A PhD degree in optimization or systems and control theory. - A strong mathematical background and an interest in conducting theoretical research. - A proven track record. - Excellent English
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expertise plays a leading role in this global development. By controlling environmental factors such as temperature, light, and fertigation, growing conditions can be optimized for crop performance, allowing
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candidate will contribute to cutting-edge research in optimal control theory, differential game theory, mean-field game theory, and mean-field-type game theory, developing advanced mathematical frameworks and
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optimization. Help us shape the future of chemical research! Self-driving lab platform for photochemical and porosity research Join a highly interdisciplinary project with the spectroscopy at its core at the
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | about 2 months ago
team. Where to apply Website https://jobs.inria.fr/public/classic/en/offres/2026-10273 Requirements Skills/Qualifications Technical skills and level required: Mechanical/robotic system design and control
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. Anticipating the new legislation, the INPROBED project has been granted, which aims to precisely identify and modify cis-regulatory elements and transcription factor genes that control key physiological pathways
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established instrumentation requires new approaches to control sound waves with high precision and in confined volumes The position will be embedded within the research group of Dr. Kai Melde (IMSEAM