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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