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develop this innovative theory and combine spatial analysis with a Research Through Design approach. You first explore promising synergies in landscape services provision and analyse how to optimally align
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of system modelling and control, with emphasis on applications in power electronics. The student will be employed as researcher in Prof. George Weiss' control and power electronics team for a period of 15
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diverse group of students at all levels, offering a rigorous undergraduate curriculum and advanced graduate degrees. This commitment to excellence is exemplified by our graduate and Nobel laureate, Prof
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a highly motivated PhD candidate to work on sloshing control in liquid tanks as part of the ERC project ReTwist in the team of Prof. Miguel A. Mendez. Sloshing – the wave-like motion of liquid in
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the “Quantum Information and Quantum Many-Body Physics” group, led by Prof. Norbert Schuch. Our research lies at the interface of Quantum Information and Computation with the study of Complex Quantum Many-Body
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Your Job: Adaptive Control Theory (ACT) provides mathematically grounded and robust learning rules, prescribing that neurons should be diffusively forced toward a teacher trajectory and achieve
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of influence: As a university assistant (praedoc) on this 4-year position you will be part of the “Quantum Information and Quantum Many-Body Physics” group, led by Prof. Norbert Schuch. Our research lies
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). Background in modeling of dynamical systems and control theory. Knowledge of fluid dynamics and related physical modeling. Strong programming skills (e.g. Python, MATLAB, or similar) for data analysis and
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and Quantum Many-Body Physics” group, led by Prof. Norbert Schuch. Our research lies at the interface of Quantum Information and Computation with the study of Complex Quantum Many-Body Systems
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aerosol transformations inside fire plumes. Explore the link between vegetation dynamics and fire emissions. You will work at the intersection of satellite observations, modelling, and theory, and your