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sciences, and for technology development. The project focuses on elucidating the mechanisms of gene expression, by visualising the biochemical reaction, its kinetics, and key conformational changes
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seizures and developmental delay, has provided insight into genotype-phenotype relationships (Ben-Shalom et al. Biol. Psych 2017), functional mechanisms (Spratt et al. Neuron 2019), regulatory processes
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We are seeking to appoint a well-trained, enthusiastic and self-motivated scientist to join our team to investigate the mechanisms underlying the function of non-canonical RNA/DNA structures (R
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system with integrated sensors. You should hold or be near completion of a PhD/DPhil with relevant experience in the field of robotics, biomedical engineering, information engineering, electrical
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, Physics, Engineering or a relevant subject area, (or be close to completion) prior to taking up the appointment. The research requires experience in statistical mechanics method development, with
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the molecular architecture of the chloroplast’s beta-barrel protein assembly machinery using structural tools. The successful candidate will have a PhD with relevant experience in protein biochemistry and
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to secure future computing systems at lower costs and performance overheads. About you You should possess a PhD/DPhil in Engineering, Computer Science or other related field, (with the possibility
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other postdocs, research assistants and PhD and project students. The research group aims to apply the latest advances in molecular biology, immunology and neuroscience to better understand the mechanisms
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2026 Hours: Full Time (37.5 hours per week) About the role We are seeking to appoint a Postdoctoral Research Associate to join Prof Philip Biggin’s lab to investigate processes and mechanisms associated
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out rigorous and impactful research into the computational mechanisms of human learning using deep neural network models, and disseminating the findings within the research group, across the wider