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to undertake both experimental work and numerical studies and will be expected to liaise with key institutes such as the Institute of Photonics and Advanced Sensing and biologists in the Faculty of Health
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applications in other multidisciplinary fields. The successful applicant will be required to undertake both experimental work and numerical studies. They will be expected to liaise with key institutes such as
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boundary developing the field known as levitated optomechanics. The successful applicant will be required to undertake both experimental work and numerical studies. They will be expected to liaise with key
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numerical analysis or modelling of (palaeo)environmental data using R/python/Matlab or similar platforms. Experience with sediment analysis, which may include palaeoecological techniques, sedimentology
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abilities, and advanced analytical and computational skills, including demonstrated proficiency in both numerical and symbolic calculations. As part of our ongoing commitment to equity, diversity and
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-year stipend scholarship to support pioneering research on wave energy converters. The successful candidate will work on cutting-edge experimental design and numerical modeling to better understand
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equations, and numerical methods. Advanced programming skills in languages such as Python, C++, MATLAB, or R. Strong academic curiosity and enthusiasm for the chosen research area. Application Process To
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. Very good organisational and management skills. Advanced analytic and computational skills, including the demonstrated ability to perform numerical and symbolic calculations. Senior Lecturer (Level C
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Engineering. Familiarity with partial differential equations (PDEs) numerical analysis and / or data science and statistics will be an advantage. Number of scholarships: One Contact person: Associate Professor
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equivalent, with expertise in nuclear and/or maritime engineering Demonstrated research ability that supports the School's research strengths hydroacoustics, modelling and computation, numerical and