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glacial processes, and coupled hydrological processes or earth system modelling of terrestrial carbon cycle processes. As well as experience of large dataset collation and analysis, including geospatial
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forms part of a large multi-institution collaborative project entitled Next Generation Electrodes (Nextrode) funded by the UK’s Faraday Institution. The appointed person will collaborate with other
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, or similar languages, and proficiency in high-performance computing. You will have experience in large-scale genomic data analysis. You will be able to demonstrate how to organise and prioritise work
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The post-holder will join a team of investigators working on the NERC-funded Large Grant ‘Ex-X’ Expecting the Unexpected. Understanding ‘dangerous’ volcanic transitions’, led by Prof. Jenni Barclay
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synaptic function and synaptic loss, and keep meticulous, detailed records of your work and commit to engaging with cloud-based analyses on the IMCM data platform. Other duties will include collaborating
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journals, and demonstrate the ability to manage complex projects, analyse large datasets, and deliver results to tight deadlines. Your collaborative mindset and excellent communication skills will enable you
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assessing sustainable routes for large-scale removal of greenhouse gases from the atmosphere. As well as interact with others in this programme within the duration of the post, and the results of the PDRA
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. The scale of these assays will be large, and this post will require excellent organization and planning skills. Previous experience with qPCR , flow cytometry and experimental evolution would also be
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to determine the activators of inflammation in atherosclerosis. You will identify and develop suitable techniques, and apparatus, for the collection and analysis of data (e.g. flow and mass cytometry, confocal
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. The research is further supported by Professor Eric O’Neill (Oncology), who leads a large research group focused on pancreatic cancer immunobiology. The role will be based across the Institute of Biomedical