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up to a £5k/annum research training support grant for the full duration of the 4-year programme. Metal-ligand multiple bonding is a burgeoning area for making chemically novel structural motifs
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Pharmaceutical Roundtable. In this project we will employ deep learning-based protein sequence design tools to deliver biocatalysts for peptide synthesis. These designed enzymes will be further optimized using
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therapeutics are an emergent drug modality and consist of modified or unmodified short nucleic acid sequences; these include antisense oligonucleotides (ASOs), small interfering RNAs (siRNAs), microRNA (miRNAs
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-world skills to apply biocatalysis, protein engineering and sustainable manufacturing in industry. We offer: PhD projects co-developed with industry and aligned with real manufacturing challenges advanced
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biocatalysis, protein engineering and sustainable manufacturing in industry. We offer: PhD projects co-developed with industry and aligned with real manufacturing challenges advanced theoretical and practical
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biocatalysis, protein engineering and sustainable manufacturing in industry. We offer: PhD projects co-developed with industry and aligned with real manufacturing challenges advanced theoretical and practical
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multiple adsorption–desorption cycles. Recent work at Manchester demonstrated significant improvements in MOF stability (Adv. Sci. 2024, 11, 2305542; Angew. Chem. 2023, 135, e202302602; JACS 2022, 144, 18967
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the utilization of CO2 by different microbial taxa. Our hypothesis is that CO2-driven carbon cycling is conducted via a metabolic division of labour between multiple community members that can be traced through
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of DC voltage controlling stations (including droop control, both single and multiple droop) and active power controlling stations. The multi-terminal configurations will be used to develop models in
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geometry drives atherogenic flow. It introduces the concept of haemodynamic fingerprints and geometric archetypes applicable across multiple arterial systems and will produce a reusable plaque–flow atlas