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Studentship Information Supervisor: Vinay Shukla Subject Area: Plant & Crop Science Research Title: Root oxygen dynamics and development Research Description: The student will be part of a
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applications, ensuring system stability across a wide range of nonlinear loads and operating conditions. Aim You will have the opportunity to research and implement innovative approaches to ensure stability and
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dynamic environments, including narrow spaces and interactions with unfamiliar objects. This project aligns with Rolls-Royce’s technical needs for developing soft robotic solutions to enable in-situ/on-wing
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be compared and calibrated. In-silico technique based on Computational Fluid Dynamics (CFD) will also be developed to provide further information necessary for the development of new MRI image scanning
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such as fuel systems, transportation and power generation. Vision We are seeking a highly motivated PhD researcher with a passion for fluid dynamics, AI, and sustainable aviation. The vision of this PhD is
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, is strongly associated with physical activity levels, and is a cause of significant disability. PhD description: To address this we have a large cohort study running. We are looking for a dynamic
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are invited for a fully funded Industrial Doctoral Landscape Award in partnership with Siemens Digital Industry Software, focused on advancing the next generation of industrial Computational Fluid Dynamics (CFD
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language), finite element modelling or computational fluid dynamics, composites mechanics, composites manufacturing, statistical modelling. Funding support After a suitable candidate is found, funding is
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with rigorous control-theoretic principles, enabling reliable decision-making and control in complex, uncertain, and dynamic settings. Motivation Learning-enabled autonomous systems are increasingly used
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overloading our energy grid? The answer lies in renewable assisted home Energy Management Systems (EMS) that seamlessly integrate solar power, EVs and the single-phase mains. By dynamically managing energy