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from large-scale body movements to fine-grained actions like speech. We bring diverse perspectives and methods to study fundamental issues in motor control, particularly in the context of Parkinson’s
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hub for advanced manufacturing, i.e., Manufacturing Technology Centre (MTC). and with academics from the globally renowned Power Electronics, Machines and Control (PEMC) Research Institute
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The ERC Synergy project ALCEMIST (lcsoftmatter.com/alcemist ) challenges the conventional engineering mindset of using motors to drive passive structural components by developing innovative
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facilities, including advanced microscopy, controlled environment growth rooms, genomics, proteomics, and metabolomics platforms. • Opportunities to work across model and crop species, including Arabidopsis
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Digital-Twin Technology to Accelerate Development of Electric Propulsion Systems This exciting opportunity is based within the Power Electronics, Machine and Control Research Institute at Faculty
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Control Research Institute at Faculty of Engineering which conducts cutting edge research using the Digital Twin Technology to accelerate electric propulsion system development. Applications are invited
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). Access to cutting-edge facilities, including advanced microscopy, controlled environment growth rooms, genomics, proteomics, and metabolomics platforms. Opportunities to work across model and crop species
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key questions: What are the molecular basis of EOM myofibre specialisation and unique modes of sensory-motor control? Why are EOM myofibers more robust in neuromuscular disease? Scientific Objectives
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fuel cells with the vessel’s onboard DC distribution grid (1-1.5 kV or even MV) require power electronics, which enable power and voltage control. Designing high-efficiency and low-footprint power
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in Neuroscience (PhD) The Effects of a Child-Friendly Mindfulness Karate Program on Academic Success and Cognitive, Social-Emotional, and Motor Development Lulu Pei Doctor of Philosophy in Human