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, has been established through active research in this field. The research group you would be joining is focused on the research of AI-enhanced emerging satellite-based navigation technologies supporting
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navigation technologies supporting wider adoption and improved safety of operation of autonomous systems, such as enhanced situational awareness, robust and resilient position, navigation, and timing
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validating novel human-swarm collaboration framework with effective AI and augmented reality technologies. Applicant will work in the Centre for Autonomous and Cyber-physical Systems at Cranfield
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Centre for Propulsion and Thermal Power Engineering and specifically the Rolls-Royce UTC in Aero Systems Design, Integration and Performance . This role will contribute to the development of various
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experience in designing, developing, and validating novel human-swarm collaboration framework with effective AI and augmented reality technologies. Applicant will work in the Centre for Autonomous and Cyber
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Aerospace – Centre for Propulsion & Thermal Power Engineering Research Fellow in Fluid Dynamics for Aero System Design Fixed Term Contract until 30 September 2026 Full time starting salary is normally in
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for commercial aircrafts. The vision is to develop a new design and manufacturing technology for landing gear using advanced additive manufacture, novel materials and new design methods. This will contribute to a
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to develop a new design and manufacturing technology for landing gear using advanced additive manufacture, novel materials and new design methods. This will contribute to a new landing gear design
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applications from engineers - scientists with expertise in computer engineering and/or programming and/or algorithm deployment within the aviation sector covering intelligent sensing and acquisition and
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engineering plastic deformation models, with particular emphasis on their parameterisation. You will join a unique research environment that will allow you to perform leading research in mesoscale mechanics and