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algorithms, finite model theory, constraint satisfaction, interconnection networks, universal algebra and mathematical logic. ACiD and NESTiD share many members and there are lots of interactions between
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Digital Simulator (RTDS) and Solar & Wind Emulator for real-time simulation and analysis of power systems and renewable energy, and control strategy development ; BubbleRAN platform to boost ORAN research
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. Project Leads are Dr Simona Capisani and Prof Karen Johnson and you will contribute to the analysis of collected qualitative data, data interpretation, and possible write-up using a range of analytic
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involve working with novel materials like transition metal dichalcogenides and conductive metal oxides. Key responsibilities: The successful candidate will be expected to: Develop transport simulation code
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surface morphologies and potential maps. This will involve working with novel materials like transition metal dichalcogenides and conductive metal oxides. Key responsibilities: The successful candidate will
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Associate in organometallic materials chemistry with a particular emphasis on multi-step synthesis and characterisation of transition metal complexes with tailor-made ligands. The overall aim of the project
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record in modelling of complex physical or societal systems and the analysis of corresponding data. Within the project, they will be responsible for various aspects of the modelling, primarily
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successful applicant will be expected to lead and develop qualitative research activities, data analysis and project support. The applicant will have responsibility for leading participatory research
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limiting factor in studying various spectroscopic phenomena, such as NMR chemical shifts. Offloading this to GPUs is the core work to be carried out by the PDRA.
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). The Role Applications are invited for a Postdoctoral Research Associate in organometallic materials chemistry with a particular emphasis on multi-step synthesis and characterisation of transition metal