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recent decades and how these relate to shifts in drinking culture in England over the same period. You will develop new methods to quantify gender differences in the overall impact that alcohol consumption
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are seeking a motivated PhD candidate to contribute to our efforts to develop innovative artificial intelligence-based tools for integrating and consolidating multidimensional geographic data from diverse
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Deadline: 17 June 2024 Details The project combines state-of-the-art advanced mathematical tools and numerical simulations to better understand, predict and control pipeline flows for greener transportation
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set of tools and approaches as there is increased recognition that the existing toolkit is unable to accommodate deep uncertainty[3],[4]. This project seeks to develop a novel approach to work with deep
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PhD Studentship in: Understanding risks from emerging contaminants (PFAS) to surface water resources
potential effects on human health. PFAS are frequently detected in various environmental media (including surface water and groundwater) and biological tissues. There is a therefore a need to develop the
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of this technology by device and drug manufacturers. We are looking for applicants who are eager to develop new skills and apply their existing knowledge. The project requires a good level of mathematical and solid
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may be appropriate. For spatially uniform, straight river channels, without vegetation, this is around 100x the channel width downstream of the outfall. This project will develop an assessment tool
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, the project will 1) develop a robust 3D estimation/reconstruction module to interpret and convert observations like 2D images into 3D pose information, 2) refine this technology to allow for interactive editing
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will be used to train predictive models to inform pro-active network maintenance with the outcomes being reviewed and annually updated. This project offers a unique chance to develop data-driven
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will develop cell-level biological networks for the prediction of the changes in molecular and cellular concentrations over time due to biochemical stimuli and will integrate them with the finite element