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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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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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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
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to explore how AI can improve public services, with a focus on temporary housing, social care, the local economy, and sustainability. Your work will involve developing predictive models to help prevent
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services, with a focus on temporary housing, social care, the local economy, and sustainability. Your work will involve developing predictive models to help prevent homelessness and improve the way temporary
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temporary housing, social care, the local economy, and sustainability. Your work will involve developing predictive models to help prevent homelessness and improve the way temporary accommodation is allocated
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candidate will have a: Strong background in a relevant discipline (mathematics/ physics/ computer science/ bioinformatics). Enthusiasm for immunology and mathematical modelling Creative approach to problem
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experience in Biosciences and Bioinformatics using Python and R and practical experience of applying these skills and techniques in Machine Learning models and software development. High level analytical
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and Bioinformatics using Python and R and practical experience of applying these skills and techniques in Machine Learning models and software development. High level analytical capability is essential