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. About the role Increasingly, it is appreciated that development and maintenance of host tissues is influenced by the microbial communities that live in and on our skin, gut, mouth, and nose. This can be
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will develop novel tools which will allow efficient flow modelling tools for other researchers to explore higher fidelity thermochemistry modelling. The main responsibilities of the post will be
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is part of the Precision Musculoskeletal Care theme at the NIHR Biomedical Research Centre. The PDRA will help drive our activity in developing, validating, and testing a suit of new musculoskeletal
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of blood and mucosal samples from clinical studies. Training will be provided but previous experience in microbiology is expected. You will also participate in developing and establishing methodologies
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the formation of the brain during embryonic development and in early postnatal life. This is based on the understanding that early experience shapes the way our brain is constructed. While the “ground plan
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(LiB’s). You will be responsible for: • Developing models and simulations of the electrode fabrication process, sensors, and actuators. • Developing a demonstrator of a soft sensing system that
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PHURI’s multidisciplinary research themes. We value scientific excellence, mentoring, and career development within a supportive, collaborative team. Join us to help translate genomic discoveries
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, and presentations Contribute to exhibitions and stakeholder engagement Support funding applications and project development About You We are seeking a researcher with: A PhD (or equivalent) in a
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that development and maintenance of host tissues is influenced by the microbial communities that live in and on our skin, gut, mouth, and nose. This can be due to direct contact, as in the gut, or via the production
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of genome organisation and metabolic control—with the bold vision of building synthetic life. In this role, you will develop and apply computational methods to analyse single-cell modalities, focusing on gene