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processes so that our overall energy requirements are much lower, using new technologies, increasing energy efficiency and recovering waste energy. This project will evaluate the potential opportunities
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. Unlike purely theoretical PhDs, your work will directly inform decisions in a live industrial setting. You will be focussed on a live industrial plant, not a hypothetical system, involving direct
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a key challenge in sustainable process engineering: translating microbial electrolysis cell (MEC) technology from lab-scale innovation to robust, industrial deployment. The research will sit at
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Mitochondrial diseases are among the most common inherited metabolic disorders. Despite advances in genetic diagnosis, important questions remain regarding the processes that drive disease progression and
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and how disruption of these processes contributes to congenital heart defects. The project will combine state-of-the-art single-nucleus RNA sequencing, spatial gene expression analysis and molecular
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and how disruption of these processes contributes to congenital heart defects. The project will combine state-of-the-art single-nucleus RNA sequencing, spatial gene expression analysis and molecular
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genomics, bioimaging, flow cytometry and bioinformatics support. Eligibility criteria The applicant shall not have resided or carried out his/her main activity (work, studies etc.) in UK for more than 12
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public health teams prepare for and respond to outbreaks and work with experts in microbiology, data science, and public health, gaining skills in statistical modelling and bioinformatics. Number Of Awards
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efficiency. You will be embedded within a multidisciplinary team of experts in artificial intelligence, bioinformatics, laboratory automation and synthetic biology. While the wider team develops AI-driven
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, purified and tested for biological activity together, in a single operation taking as little as a week. You will apply this new approach to real drug targets in cancer, working at the interface of synthetic