17 software-engineering-model-driven-engineering-phd-position Fellowship positions at UNIVERSITY OF SURREY
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fellows and PhD students at the other University project partners. The contract will be for 3 years. The project would ideally suit candidates with an Engineering background with strong mathematical
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simulation of engine systems. You will be working closely with engineers at Rolls-Royce and with academics, postdoctoral research fellows and PhD students at the other University project partners. The contract
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, or be close to completing, a PhD in Chemical Engineering, Environmental Engineering, Biotechnology, Electrochemistry, or a related discipline. You should have hands-on experimental experience with
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(ISAC) for Future 6G Radio Access Networks. This exciting opportunity will see the successful candidate work on a collaborative research project with Interdigital, addressing technology creation
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, their fabrication and characterisation in order to be translated to industry with our partners. This includes laboratory experimentation, critical evaluation and interpretation, computer-based theoretical modelling
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responsibilities will include Conducting systematic and critical literature reviews on areas that include young masculinities, digital media, family negotiation of digital technology use and gendered moralities and
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students involved in the project. About you We are looking for someone with: A PhD, or a PhD nearing completion at the time of appointment, or equivalent research experience, in cognitive neuroscience
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individually, make a real difference. The role Applications are invited for a Research Fellow position to work in the Catalysis for Chemical Circularity Group in School of Engineering, University of Surrey
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, APIs and prototype systems with external partners. The position will be based at the University of Surrey in Guildford, UK. The post is available for an immediate start and is for a duration of 12 months
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and computational modelling aspects of the project, extending our work on symmetry-protected quantum states in interacting many-body systems and their implementation in superconducting quantum circuits