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of structures and turbines. You should possess a relevant PhD (or be near completion) in Engineering, Naval Architecture, or a related discipline, have a strong background and relevant experience in fluid
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to unravel the molecular architecture of the chloroplast’s beta-barrel protein assembly machinery using structural tools. About you The successful candidate will have a PhD with relevant experience in
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the architectural direction of the platform, and provide guidance to build the best possible products. We anticipate the role being approximately 80% leadership work, and 20% hands-on engineering. You will be
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the discipline of work including as a first author is essential, as well as experience of original deep learning in imaging architecture design and evaluation. Informal enquiries may be addressed to Professor
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across projects, and implementing practical solutions that meet our organisation's evolving needs. In this collaborative environment, you'll be one of the key contributors to the architecture and
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engineering project while applying software engineering best practices and using common software architecture paradigms (e.g., Object-orientated programming). You will also have significant experience with one
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Architecture (‘CAVAA’) which is hosted by the Oxford Uehiro Centre. The position is part-time (0.5 fte) and fixed-term to 31 August 2024. The research focus of the support role is consciousness and the moral
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-site work. The OSGA Professional Services offices are located in Oxford city centre, surrounded by its stunning architecture, history and culture. The University of Oxford holds an institutional Silver
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solar cell architecture based on highly charged dielectric nanolayers. In addition to the fundamental work required to demonstrate the high efficiency of the cell, they will develop the cell production
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ester, carbonate and ether blocks, amongst other chemistries. The use of precision polymer synthesis methods allows for investigation of influences including polymer molar mass, architecture, regio