69 structures-"https:"-"https:"-"https:"-"https:"-"https:"-"LGEF" Fellowship positions in United Kingdom
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of the strength and ageing of adhesively bonded joints for aerospace structures. Various composite and metallic adherends will be considered. The candidate will use their understanding of structural mechanics and
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of the strength and ageing of adhesively bonded joints for aerospace structures. Various composite and metallic adherends will be considered. The candidate will use their understanding of structural mechanics and
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part of the research team to establish and understand the structuration of algae/soybean/mung bean proteins for high quality alternative protein foods including through high moisture extrusion. Key
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mechanical metamaterials 2. Dynamic and wave propagation analysis of smart structures and lattices 3. Experimental characterization of dynamic metamaterials The ideal candidate will have a strong background in
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: Resistance Analysis: Conduct simulations to analyze wave interactions, buoyancy, and stability of modular floating structures. Optimize designs for dynamic environmental conditions (e.g., waves, tides
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tracking systems. Strong written and verbal communication skills, including producing clear minutes, action logs, and structured documents for diverse stakeholders. Comfort working with multidisciplinary
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Grant “Unwrapping topologically protected light on topologically structured surfaces”. Building on the University of Southampton’s long-established and internationally recognised strength in metasurface
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-centric machine-learning frameworks for large-scale sequence-structure analysis and functional prediction. The role involves designing, implementing, and benchmarking computational models; developing and
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behaviour, market microstructure, and platform economics to generate testable predictions and policy insights Develop and estimate structural models of trading behaviour to understand deep parameters and
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congenital heart defects and structural diversity across populations and species. In doing so, we aim to identify novel approaches to diagnose and repair structural defects of the heart wall and septa. We use