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This role is an exciting opportunity to work on the interplay between biology and physics on ocean carbon sequestration by the Biological Carbon Pump. You will run an ocean biogeochemical model
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“LAHAR-MM: An integrated approach to LAhar Hazard Assessment and eaRly warning using geophysical Monitoring and numerical Modelling”. This project will investigate the characteristics and flow behaviour
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the evaluation of the local food environment context in Liverpool, how it affects communities in social housing experiencing food insecurity, and the epidemiological modelling of the impact of a series of
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for informing rheological characterisation of living and model algal cell walls in dynamic and physiological environments. This exciting project aims to reveal the mechanical properties of the cell walls
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models with infinite state spaces. We will investigate new ways to restrict non-determinism that maintain high expressiveness while simultaneously allowing for efficient verification procedures. In
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the effect on gene expression in the parasite. This full time role would be ideal for someone who has experience in CRISPR techniques in model organisms and who is interested in applying them to human
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partners. We are seeking one researcher to join the project on a full-time basis to lead and work on the Liverpool elements of the project. This will involve the design, modelling, and test of vapour
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; the analysis of data from muon experiments to extract the properties of muons including the provision of software for tracking and modelling of the detector; the construction and exploitation of experiments