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computer vision and machine learning whilst working in an environment with high levels of external collaboration and industrial research impact.
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to highly complex, two-way interactions between the wakes and the overlying atmosphere. While the wider project combines both experimental and computational tools, this position at Durham University focuses
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multiple ship classes and shore power applications. The project seeks to deliver industry-relevant modelling toolkits that enable optimal design and operation of greener vessels, backed by real-world
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spectrum availability, potential bandwidth and security resulting from the use Radio Frequencies for communications. Free Space Optical Communications offer an exciting technology which can provide a high
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multiple ship classes and shore power applications. The project seeks to deliver industry-relevant modelling toolkits that enable optimal design and operation of greener vessels, backed by real-world
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Deadline 26 Jun 2026 - 00:00 (UTC) Country United Kingdom Type of Contract Other Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job
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researchers and expected to carry out high quality work closely with academic colleagues and industrial partners. They will contribute to a number of industrial research projects and will be responsible
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multiple ship classes and shore power applications. The project seeks to deliver industry-relevant modelling toolkits that enable optimal design and operation of greener vessels, backed by real-world
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the Department of Anthropology at Durham University. The successful candidate will join a five-year EPSRC Programme Grant project called "Electrical Composites" (EleComp) that involves eleven academics
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career academics who would benefit from a structured development programme and provision of both formal and 'on the job' training. The posts are also open to those who are returning to academia after a