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autophagy and the innate immunity response. Using cutting-edge omics (transcriptomics/proteomics), advanced imaging (confocal) and cellular biology approaches (macrophages, autophagy biomarkers), this project
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scenarios and test fundamental physics. This work will provide essential tools for extracting science from current observing runs and preparing for next-generation gravitational wave detectors. The PhD
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positioned to benefit any applicant interested in a future career in healthcare technology. The University emphasises the clinical translation of innovative research to ensure real-world impact through
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, materials science and physiology. The University is uniquely positioned to benefit any applicant interested in a future career in healthcare technology. The University emphasises the clinical translation
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collaboration with modelling or industrial partners Candidate Requirements We welcome applications from candidates with the following background: Academic degree (BSc / MSc or equivalent) in Materials Science
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, materials science, environmental engineering, or a related field - Strong laboratory skills and an interest in sustainable construction technologies - Experience with cementitious materials, durability
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. This PhD project will explore a novel approach: leveraging polymeric microelectromechanical systems (MEMS) technology to create a miniaturised micropump-based ingestible capsule that can actively deliver
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Project Overview This PhD project is part of an Innovate UK-funded research programme focused on developing a novel ammonia-fueled engine and generator set (genset) demonstrator for harbour and
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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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A fully funded 3.5-year PhD studentship (UK home fees only) is available in the group of Dr Jamie Lewis at the University of Birmingham in the area of synthetic supramolecular chemistry. The project