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pathways. The goal is to design bio-instructive materials that actively direct immune and bone cells toward regeneration. These will be characterised using AFM and rheology, followed by immune–osteogenic co
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). Additional project costs will also be provided. Overview Additive manufacturing (3D printing) is a digital technology and a key enabler for realising next-generation equipment designs that are less energy
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on hydrothermal processing, an underdog compared to electrochemically derived hydrogen to methanol production, yet with promising potential for disruptive market innovation to regenerate the energy-intensive drying
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, an interest in biomedical research, and the ability to work independently are essential. Prior experience/knowledge in Electromagnetism, COMSOL, microfabrication, and PCB design are desirable but not essential
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involve the the design and synthesis of new covalent fragment screening libraries incorporating novel hydrophobic warheads using a Fraglite design approach This covalent fragment set will be designed
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increased completion time, training loss, energy consumption and reliability. To tackle communication overhead in FL and SFL, we will focus on designing protocols that minimize data exchange between devices
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Award summary 100% fees covered (Home), and a minimum tax-free annual living allowance of £20,780 (2025/26 UKRI rate). Overview The project aims to design and optimise new warheads
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behaviour and system efficiency. Uncertainty is inherent in the design of subsurface energy technologies, particularly during early-stage development when data may be sparse, incomplete, or inaccessible
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the frameworks necessary to continuously verify AI safety in operational contexts, leaving systems vulnerable to unpredicted behaviors. The proposed framework provides a comprehensive solution by designing
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research, industry, and medical engineering. Methodology The overall aim of the project is to design and evaluate processes that integrate formal requirements and formal specification-based automated test