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material-based composites specifically designed for wastewater treatment through the innovative use of piezocatalysis. The successful candidate will engage in cutting-edge research to understand, design, and
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examine the collected materials. Phase 3: Model & Method Development - Map findings onto established design processes and propose a framework to guide researchers and practitioners. Phase 4: Outcomes
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and reactive processes in materials with multicomponent composition. You will play a pivotal role in this undertaking, developing core quantum-computing methods and methodical interfaces for integration
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and specialist in the areas of composite materials, structural mechanics, optimisation and finite element analysis. Apart from computational expertise, the role holder will also be comfortable in
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Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological
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–organic frameworks, metal oxides, and composites with carbon nanomaterials); experience in determining the physicochemical properties of porous materials using spectroscopic, diffraction, and microscopic
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communications. Coordinate with students to collect photos or additional materials requested for donor reports. Collaborate with development or advancement staff to ensure all reporting pieces match donor intent
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professional opportunity, but also being close to a stimulating environment with all our research lines in simulation and numerical modeling, manufacturing and experimental testing of composite materials, design
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AI-assisted grading of end-of-life wind turbine composite materials for a circular economy Offshore Wind CDT PhD Research Project Competition Funded UK Students Dr James Maguire, Dr T Rogers, Prof
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ion channels interact with key intracellular chaperone complexes, characterizing composition changes by biochemical, mass spectrometry, and structural methods, and investigating perturbations caused by