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lack seemingly beneficial strains? Building on these novel empirical findings and existing theory, you will investigate how developmental and ecological factors shape colonisation, and how the gut
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criteria: A first-class or strong upper second-class undergraduate degree with honours in Engineering, Physics or Materials Science Excellent English written and spoken communication skills The following
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are fundamentally limited by a "one model for one task" design philosophy. This approach incurs prohibitive engineering costs and yields brittle solutions with poor generalisation to new network conditions, trapping
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Requirements: Applications are welcome from highly motivated candidates with a background in: Civil Engineering, Materials Science, or related disciplines. Experience or interest in Applied Rheology, Concrete
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. The successful candidate will be based in the Mechanical and Aerospace Systems research group (previously known as G2TRC) within the faculty of Engineering and will be part of a supportive team of 50 researchers
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social-ecological research on perceptions of urban blue space. Despite often appearing to be natural systems, urban blue space is increasingly planned, managed, and engineered. New research is needed
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energy trading strategies will also be proposed and investigated to achieve optimized P2P trading within the EC. The project will be done using MATLAB coding and modelling in Simulink environment. Funding
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Faculty of Health, Science and Technology 3 Year, full-time PhD studentship Eligibility: Home UK/EU and International applicants Bursary p.a: The stipend is at the UKRI rate (currently £20,780
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(HVDC) technology will be used to bundle energy from several windfarms and transport to load centres. Future offshore wind farms are expected to be further optimized either functionally or in
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of complex scientific data. Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline. To