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of secreted protein kinase of the opportunistic human bacterial pathogen, Legionella pneumophila. Primarily, you will apply Mass-spectrometry-based (phospho)proteomics and interactomics to decipher host
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archaeal genomes, characterizing core and accessory gene dynamics across diverse phylogenetic scales. A key focus will be developing transformer models to capture patterns of prokaryotic evolution, including
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the University of Bristol. Your role will focus on modelling the population-level epidemiological and economic impacts of new policy interventions in the out-of-home food sector. You will work alongside experts in
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PhD in a relevant scientific discipline, for example, Cell Biology-related subject, Tissue Engineering or Biomaterials. Excellent manual dexterity and experience in cell culture and models, and tissue
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between Departments is important to the role which will be based in the Materials Innovation Factory. The post will involve leading an iterative programme of applied polymer chemistry and materials science
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bases, interventions and policies focused on sustainability and net zero transformations. By connecting sustainability with justice, research with action, and constituent knowledge producers and community
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have a PhD (or equivalent professional experience) in an appropriate engineering discipline (Naval Architecture/Civil/Structural Engineering /Mechanical/Renewable Energy/Engineering Management). The post
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. An ability to use diverse methods in the pursuit of applied knowledge is preferred and a PhD, completed or near to completion, in a relevant discipline required. You will have experience of working
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Chen, based in the Department of Chemistry and the Materials Innovation Factory. Key responsibilities and duties: ¿ Design, synthesise and characterise new smart sustainable polymers and/or polymer
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these manipulations have on gene expression. This full-time role would be ideal for someone with a strong background in molecular biology in either model organisms or parasites and an interest in epigenetics