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PhD project: Modelling Reliability and Resilience of Hydrogen Systems for Improved Safety and Sustainability Supervised by: Rasa Remenyte-Prescott (Faculty of Engineering, Resilience Engineering
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to the interests of one of the School’s research groups: Cyber-physical Health and Assistive Robotics Technologies Computational Optimisation and Learning Lab Computer Vision Lab Cyber Security Functional
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studentship (UK nationals only) Tax-free stipend: £25,000/year Full home tuition fees paid £2,000/year for consumables and travel MTC funding requires passing security checks prior to starting Project aim
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studentship (UK only) Tax-free stipend: £25,000/year Full home tuition fees paid £2,000/year for consumables and travel MTC funding requires passing security checks prior to starting Project aim Deliver a
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-engineering-cdt.ac.uk or send an email to hello@fusion-engineering-cdt.ac.uk . About the Project Operating robots in nuclear environments presents unique challenges due to safety risks, complex manipulation
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year for consumables and travel. Funding from MTC requires passing their security checks before starting the PhD. Vision We are seeking a PhD student that is interested in robotics and automation
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(This placement will require national security vetting at the security check (SC) level, which makes the restriction to UK nationals necessary). Expected starting date October 2025. We are seeking
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key area of patient safety that can be improved with the use of computer vision approaches to system analysis. For many clinical procedures there can be multiple deviations in service delivery, which
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laser processing method to enable in-situ surface treatment and repair of safety-critical rotating parts and further understand the correlation between surface quality, metallurgical characteristics and
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at the Rolls-Royce UTC dealing with in-depth investigations of the response of advanced aerospace materials to various manufacturing operations in the scope of robust manufacture of safety-critical aero-engine