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and adolescents develop and identify with superordinate categories (e.g. being European), and the impact of those identities on individual (e.g. well-being, civic engagement) and societal outcomes (e.g
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predicted by AlphaFold2 to complete the structural human proteome, analyse known and previously unknown binding sites and map pharmacophores to each site. This will form the foundation for future development
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nitrogen. This study will quantify the impacts of diverse swards on enteric methane emissions including the development of methane emissions factors for grazing beef cattle. The primary responsibilities
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the development of the bioinformatic pipeline for the >3000 samples ensuring harmonised protocols, high-quality data generation, and robust statistical and bioinformatic workflows across all participating sites
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three large, multi-site human cohorts in Europe. The successful candidate will oversee the development of the bioinformatic pipeline for the >3000 samples ensuring harmonised protocols, high-quality data
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proven record of research and publication, appropriate to career stage. They will be expected to collaborate on a three-year research and teaching impact initiative called the Maynooth University Food
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. They will be expected to collaborate on a three-year research and teaching impact initiative called the Maynooth University Food Sovereignty Lab (FSL) within the Department of Geography. The candidate will
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and adolescents develop and identify with superordinate categories (e.g. being European), and the impact of those identities on individual (e.g. well-being, civic engagement) and societal outcomes (e.g
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the challenges of biopharmaceutical characterisation and have proven experience in the development and application of LC and MS methods to deliver impactful solutions to these challenges. You understand
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develop feed and feed additive based solutions to reduce enteric methane emissions from pasture based dairy cows with the investigation of concurrent impacts on rumen physiology, rumen fermentation and the