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and Urban Habitat) and was the recipient of the 2024 Award of Excellence in Innovation. Through generous support from WSP UK Ltd, the objective of this project is to extend the research conducted
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recycle content crush alloys. The main objective of the project is to understand the deformation behaviour of the high recycle content crush alloys and the role of tramp elements in controlling the final
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control system that enhances Annual Energy Production (AEP), reduces mechanical stress, and improves fault detection using machine learning (ML) and physics-based modelling. The candidate will gain hands
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impurities and scrap-blends on the corrosion performance of alloys evaluated through different corrosion tests supported by advanced characterisation techniques. The objectives are as follows: To evaluate
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essential. Project Details This PhD research aims to elevate wind turbine blade technology by advancing owl-wing and other bio-inspired designs for noise reduction and aerodynamic efficiency. Key objectives
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(contributing approximately 50%), advancements in aircraft technology (30%), and operational improvements (20%) – together supporting the industry's 2050 carbon-neutral growth objectives. Broadly, this project
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co-supervised by both academic and industry experts, gaining valuable skills at the interface of hydrogeology, environmental engineering, and computational modeling. Research Objectives Understanding
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against emerging threats. The proposed research question is: What design approaches enable an autonomous AI-powered red agent to effectively detect system vulnerabilities and emulate realistic adversarial
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research objectives include analyzing how these actors understand and navigate the ‘innovation challenges’ pertaining to antimicrobials and AMR; how the rapidly evolving life sciences knowledge of microbes
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of genome-wide association methodologies, discover novel resistance genes or mutations, primarily those that contribute to resistance against antibiotics that are currently used for the treatment of CDI