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state-of-the-art high heat flux testing, simulating the extreme environments of fusion reactors. Harness advanced computational tools to model complex particle-material interactions and predict material
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environments, offering state-of-the-art facilities and strong industrial collaborations. The project will be supervised by Dr Gregory Bizarri, an expert in radiation–matter interactions, computational modelling
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modelling tools to understand and tailor the physical and chemical interactions at the interfaces within metascintillators. Cranfield University’s Centre for Materials is internationally recognised
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proposed to overcome this issue. Yet, a detailed understanding of the molecular-scale arrangement and interactions between donor and acceptor segments remains elusive. Gaining such insight is essential
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based in School of Computing and Creative Technologies at The University of the West of England , Bristol where they will join the Music Interaction and Computational Arts (MICA) Lab . The MICA Lab is
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Centre, our main base within two floors of the centre also incorporates a state-of-the-art containment level 3 facility. Our investigators are also based within The Molecular Immunity Unit in the MRC
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Academics in the School of EEE and benefit from close interaction with Rolls-Royce engineers to develop problem understanding, innovate solutions and build transferable expertise. Modern engineered systems
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to the success and self-organization of the group for research, teaching and administration. You will continuously stay informed about the state of the art in your field. You contribute to outreach by publications
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to the success and self-organization of the group for research, teaching and administration. You will continuously stay informed about the state of the art in your field. You contribute to outreach by publications
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) have been developed in the past to describe the interaction of solar radiation with vegetation and they allow for the retrieval of major canopy characteristics. When these models are coupled with