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for autonomous systems, healthcare and rehabilitation. You will design and conduct behavioural experiments and develop computational models of multisensory integration and sensorimotor control, using approaches
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information and affective processing, decision-making by patients and clinicians, approach-avoidance tendencies, cognitive control, emotion regulation, motivation, and executive functioning.
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fields and intense infrared/THz radiation and exploit the exceptional opportunities for control and manipulation of matter. Possible areas of interest cover a broad spectrum including pulsed magnetic
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several months of in-depth fieldwork in Indonesia. You have a proven excellent command of written academic English. You have experience with planning, taking initiative, organising events and presenting
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-depth fieldwork in Indonesia. You have a proven excellent command of written academic English. You have experience with planning, taking initiative, organising events and presenting your work to a wider
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, semiconductors and their nanostructures, nanomaterials, and soft condensed matter. In your research you will use the extreme conditions created by the high magnetic fields (above 20 Tesla) to study, control and
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oscillations are involved in transforming touch from a sensory signal (i.e. where is the touch in space?) into a motor command (i.e. how should I move my eyes to look at the touch?). This question gets
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PyTorch. You enjoy interdisciplinary work: you will interact with privacy researchers, legal scholars and energy-sector practitioners. You have a good command of spoken and written English. Prior knowledge
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the exceptional opportunities for control and manipulation of matter. Possible areas of interest cover a broad spectrum including pulsed magnetic resonance techniques at the highest DC magnetic fields, control
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: the first project will investigate which neural oscillations are involved in transforming touch from a sensory signal (i.e. where is the touch in space?) into a motor command (i.e. how should I move my eyes