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Field
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R&D (6.8% of turnover in 2022) and material science expertise make it an ideal industrial partner. Candidate Profile We welcome applicants with a strong academic background (first or upper second
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of ophthalmology, fibrosis biology, and bioengineering. The successful candidate will be enthusiastic, curious, and keen to work in a diverse, collaborative research environment. Project Overview Primary open-angle
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Maguire. Training and Mentoring: You will learn a multidisciplinary set of practical skills including reaction kinetics, enzymatic chemistry, analytical techniques (e.g. NMR / fluorescence / UVVis
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Supervisors: Prof. Reinhard Maurer (Chemistry), Prof. Richard Beanland (Physics) Understanding how local atomic structure and long-range emergent magnetic and electronic properties in defective 2D
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nature-based solution opposed to traditional ‘grey’ engineering, offer catchment-level solutions by using natural processes to slow and store water through a series of diffused interventions. Historically
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. This project will develop and apply new computational/analytical tools to guide XFEL experiments for specifically tracking lattice fluctuations and ion dynamics in energy materials (batteries). The project will
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devices that rely on superior thermal insulation to deliver energy. Applicants should hold, or are expected to achieve, a 1st or 2:1 honours degree in Materials Science or Chemistry To apply, please contact
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, above. Select programme type (Research), 2025/26, Faculty of Engineering and Physical Science, next page select “PhD Engineering (UoSM) (Full time)”. In Section 2 of the application form you should insert
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with reading difficulties. Working 10 hours per week over 25 weeks, the successful applicants will work in-person in Durham and travel to local partner schools to deliver a structured reading programme
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School/Faculty: Mechanical Engineering Eligibility: UK Only Funding: School of Mechanical Engineering Studentship, in collaboration with SLB, providing the award of full academic fees, together