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: they swim, adapt, interact, and self-organize into dynamic patterns. Understanding and replicating these life-like dynamics in synthetic systems remains a major challenge across physics, chemistry, biophysics
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specifically targets protein molecules. You will combine knowledge on electrostatic interactions, fluid dynamics and machine design to develop a scalable process that has a technology readiness level of 6. You
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focus of this project is the holistic experience of urban mobility in the daily lives of individuals with physical and cognitive diversities. The point of departure is "people"—their routines and travel
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Resources Department can also provide assistance during the recruitment process. If you would like to discuss this further, please contact us via email at [email protected] . Important
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magnetic stimulation (TMS), with the broader goal of understanding cognitive fatigue as a dynamic process. Your work will involve a short literature study, hands-on involvement in data collection (EMA via a
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through a creative collaboration process; Strong problem-solving skills to deal with day-to-day operational challenges, together with demonstrated planning and organisational skills; Ability to understand
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, or space systems, combined with an interest in communication networks. Applied Physics or Physics, particularly if you enjoy applying fundamental concepts to real-world engineering challenges. Computer
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, Information & Computing Sciences, Physics, Chemistry and Mathematics. Together, we work on excellent research and inspiring education. We do so, driven by curiosity and supported by outstanding infrastructure
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to computational methods for imaging. You have: a Master's degree in mathematics, applied mathematics, computational science, mathematical physics, or a closely related field; a strong background in one or more of
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of complex thermo-mechanical behaviour (e.g., plasticity, damage, fracture) in engineering materials at different length scales, which emerges from the physics and mechanics of the underlying multi-phase