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intracellular bacteria replication or control and how antibacterial chemotherapies impact efficacy. We are interested in developing new technologies to dissect the complex dynamics of mycobacterial infection
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behind this efficiency by developing a general model of wing mechanosensing, revealing how sensor distribution and morphology have co-evolved with flight dynamics. The successful applicant will: Measure
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team to lead the wave and hydrodynamic modelling to study the impact of mangroves and seagrass on coastal dynamics and sediment transportation. As a specialist in wave modelling software, the successful
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deployment, ensuring that all deliverables meet high standards of performance, scalability, and user experience. This is an exciting, dynamic position offering the chance to engage with cutting-edge
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in marine CFD would be advantageous. What We Can Offer You: You will join a dynamic and supportive research environment at the University of Southampton, with access to world-class facilities including
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-cell genomics/computer science (AI), neuroscience, vascular biology, developmental biology, cancer biology, immunology, biology/biomedicine, pharmacy, biomedical engineering, or related fields with ample
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the underlying partial melt that supplies magmatic fluids and drives the circulation. Both partially molten rocks and hot hydrothermal fluids are anomalously conductive and thus they can be imaged by CSEM
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the underlying partial melt that supplies magmatic fluids and drives the circulation. Both partially molten rocks and hot hydrothermal fluids are anomalously conductive and thus they can be imaged by CSEM
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CRISPR and other molecular genetic technologies to study infection dynamics. Analyse Complex Data: Apply computational and biostatistical methods to analyse large data. Collaborate Across Disciplines: Work
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interest in the role of rhythmic processes in cognition. The post is available for 12 months in the first instance with the possibility of further extension. About the role The postdoc researcher will work