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Degradation (CeTPD) at the University of Dundee, within our CONTROL-MITO team. The role holder will design, synthesise, and characterise novel chemical probes, with the aim of inducing protein–protein proximity
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quantum phenomena, specifically matter-wave interferometry, AMO physics is a significant advantage. You have excellent command of written and spoken English. You are a team player and high social
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-Activity Relationships: Exploring how the chemical structure of ligands controls receptor activation and how these processes affect physiological endpoints (e.g., satiety signals, cytokine levels
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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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for nanoscale measurement and control, enhanced couplings to sensing fields, room-temperature operation, and deployment as practical quantum probes. You will focus on quantum measurement, with molecules
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children with noma and geographically matched control participants across multiple study sites. Building on our initial metagenomic study of noma, you will develop and apply reproducible analytical workflows
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(OVG) as part of the Correlates of Immunity – Artificial Intelligence (CoI-AI) Programme, a pioneering initiative that integrates controlled human infection models, advanced immunology, and AI-driven
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tissue electrical polarisation influence cell–matrix interactions during lung fibrosis progression. The postholder will develop bioelectronic in vitro platforms to precisely control matrix deformation and
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for the controlled construction of extended π-conjugated systems. Special attention will be devoted to developing radical-mediated annulation reactions that enable the rapid and modular synthesis of structurally
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Latin, Ancient Greek and English, as well as in at least one of the commonly used conference languages (Italian, Spanish or French) Excellent command of German A team player with strong social and