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prides itself in its excellent research capabilities in areas including advanced manufacturing, aerospace, biomedical, energy, industrial engineering, maritime engineering, robotics, etc. The school is
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prides itself in its excellent research capabilities in areas including advanced manufacturing, aerospace, biomedical, energy, industrial engineering, maritime engineering, robotics, etc. The school is
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, Home Helper Robots: Understanding our Future Lives with Human-Like AI, under the supervision of Professor Yolande Strengers. This exciting role offers the opportunity to contribute to cutting-edge
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, developing groundbreaking algorithms and systems that mimic natural processes to elevate the capabilities of robotic systems. In this role, you will engage in transformative projects that utilize bio-inspired
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, multifunctional sensor systems for emerging applications in healthcare, robotics, and environmental monitoring. The successful candidate will apply materials science principles to engineer sensor performance
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to the development of high-performance, multimodal sensor systems with strong application potential in digital healthcare, robotics, and smart environments. The successful candidate will be an integral part of a
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of high-performance computing and high-fidelity simulators for virtual surgery and surgical robots. The research fellow is expected to contribute in the following aspects: a) Design and implement high
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and sea level rise; (3) Projective Ecologies—utilizing generative AI to explore restoration techniques for improving degraded or post-disaster environments; (4) Environmental Robotics—analyzing beaver
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part of the Smart Gripper for Soft Robotics program. The program aims to deliver soft active gripper for manipulation of objects for industry applications. The design of coating, materials preparation
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integrating terahertz technology with robotics for applying THz imaging and spectroscopy techniques to detection of skin cancer and other skin conditions as part of the £10M EPSRC funded project, Terabotics