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Modeller to support our Ocean, Coastal and River Engineering (OCRE) Research Centre. The successful candidate would be someone who shares our core values of Integrity, Excellence, Respect and Creativity. We
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novel 2D and 3D (organoid, spheroid, epithelioid) models that are needed to identify and validate drivers of radioresistance. The School of Medical Sciences is committed to promoting equality and
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novel 2D and 3D (organoid, spheroid, epithelioid) models that are needed to identify and validate drivers of radioresistance. The School of Medical Sciences is committed to promoting equality and
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offers the chance to work with zebrafish disease models, explore new therapeutic targets, and gain invaluable experience in experimental techniques such as CRISPR gene editing, in vivo imaging, and
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. Develops and applies numerical and statistical models to better understand and predict flood risks in coastal environments, including the integration of hydrodynamic, climatic, and socio-environmental data
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model for innovative medical education and a centre for transformative research. The School’s primary clinical partner is the National Healthcare Group, a leader in public healthcare recognised
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, working on projects that aim to develop and characterize the activity of engineered anti-inflammatory therapeutics, evaluating them in animal models of autoimmunity and chronic inflammatory diseases
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employing Regression Discontinuity Designs (RDD) and related causal inference models, with a strong emphasis on advancing statistical methodology. The project presents significant methodological challenges
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for stakeholder meetings. Staying updated on literature on emerging interventions and models of prevention and care for asthma and COPD. Providing other support as required to LAH researchers and team. Consequence
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evasion thus supporting bacterial pathogenesis. We will characterise the antibacterial and anti-host activities of the T6SS and selected effectors using in vitro and in vivo models, deletion mutants and