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funded by industry (Ørsted) and is fixed-term for 12 months. The role is concerned with developing and exploiting new data-driven modelling techniques for the analysis and design of offshore foundations
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examine performance experimentally, and use numerical / analytical analysis to model and understand behaviour. You will be responsible for the design and thermal performance assessment of a range of turbine
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the EPSRC and is fixed-term for 3 years with the possibility of extension. The role is to lead the development of integrated whole system design models of tidal stream turbines for renewable power generation
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the EPSRC and is fixed-term for 2 years with the possibility of extension. The role is to lead the design and analysis of fixed bottom and floating offshore structures for application to tidal stream energy
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to 2 years in the first instance. You will be responsible for the design and testing of machine-learning based algorithms for HAIC. You will work with clinical domain experts to develop tools and
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announced EPSRC-funded programme CoTide that is developing whole system engineering models and innovative designs for tidal energy systems. The CoTide project team brings together world-leading centres
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March 2025. The postholder will work on the design and development of a new vectorial beam measurement system. Among other activities, this will involve investigating liquid crystal-based devices
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based within the Interdisciplinary Centre for Conservation Science in the Department of Biology and the Oxford Martin School. About You You will assist on the design and development of benchmarking and
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protocols. You will work with limited supervision to design and accurately execute experiments to achieve the goals of the project. Applicants should hold, or be close to completion of, PhD in Biology or a
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. The post-holder will be responsible for managing own academic research, adapting existing and developing new scientific techniques and experimental protocols. You will work with limited supervision to design