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of proteins in health and disease. Your Role As a postdoc on this project, will contribute to the design, fabrication, and application of microfluidic and nanofluidic devices for single-cell, single-molecule
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pathogens. This work utilizes advanced epidemiological modelling combined with AI methods for adaptive rather than static surveillance design. This project is particularly exciting because it combines new
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computational biologists, immunologists, clinicians, and experimental scientists, you will support study design, data interpretation, and reporting, and contribute to the development of robust, reproducible
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and characterisation of therapeutically important proteins. You will play a key role in screening and chemoproteomic studies. Your responsibilities will include designing and carrying out cell-based
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plant-colonising bacteria and integrate them into the chromosomes of appropriate bacterial chassis. Control systems will be designed to restrict expression to target plants and ensure optimal expression
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glial cells Design, validate, troubleshoot, and perform relevant assays to interrogate lipid dysregulation induced in iPSC models. Adapt existing and develop new scientific techniques and experimental
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and preclinical data from MORU and collaborators in order to optimise treatments in infectious disease contexts. You will take part in experimental design, PBPK model development and verification, and
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Laboratory. You will be responsible for: • Advancing numerical modelling methodologies for 3D woven composites • Designing and conducting high‑rate and impact experiments on 3D woven composite architectures
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parameters influencing catalytic rates so as to design more effective polymerization and depolymerization catalysts. Selected References: 1. J. Am. Chem. Soc. 2025, 147, 46, 43077–4308; 2. *Nat. Chem.*2026, 18
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their ambitions, we have created a comprehensive range of opportunities and initiatives designed to provide an exceptional launchpad for their future careers.