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the tight coupling between body dynamics, sensing, and interactions among neighbouring agents and their environments. The research will exploit an interdisciplinary approach that combines control theory
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interactions among neighbouring agents and their environments. The research will exploit an interdisciplinary approach that combines control theory, nonlinear dynamical systems, robotics, and formal methods
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electromagnetic models for complex propagation channels; Wave control theory. Applications include satellite communications, intelligent surfaces, device-to-device links, and space-time programmable environments
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control in bilinguals have mostly been studied in artificial lab based experimental settings, for example, by asking bilinguals to name individual pictures without context and without interacting with
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tuition fees covered). The aim of project is to develop a new experimental platform to control quantum states of light as they propagate through complex scattering media, with future applications to quantum
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have deep knowledge on load modelling, as well as power system stability analysis and operation. Good understanding of control theory, especially system identification is expected. Good experimental
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system stability analysis and operation. Good understanding of control theory, especially system identification is expected. Good experimental or simulation skills are expected. Industrial experience is
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3.5-year D.Phil. studentship Project: Efficient engineering and control of predictable and reliable biotechnologies. Supervisors: Prof Antonis Papachristodoulou and Prof Harrison Steel This project
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Experience in design and fabrication of devices and/or Soft Robots Experience in Material Testing/Characterization Basic knowledge of Control Theory Application Procedure Informal enquiries are encouraged and
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breeder blankets – this has made them the object of international investigation despite experimental difficulties. Corrosion, volatilisation, high temperatures, and redox control are just a few of the