69 multiple-sequence-alignment research jobs at University of Oxford in United Kingdom
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procedures according to Home Office regulations Perform routine molecular biology techniques and prepare samples for downstream analyses such as flow cytometry, immunofluorescence and sequencing Conduct 2D and
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successful candidate will work in collaboration with two other postdocs on a closely aligned project “Rethinking multi-agent systems in the era of LLMs”, funded by the Schmidt Sciences Foundation, and also
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We are inviting applications for an exciting new post for a Research Assistant to work with Dr Megan Kirk Chang on an interdisciplinary research program on the Oxford Health BRC Preventing Multiple
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multiple tasks effectively. Strong communication and interpersonal skills are essential, along with the ability to work both independently and collaboratively in a friendly and supportive team environment
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, including murine in vivo models, as well as in vitro studies using primary in-vivo and patient samples. You will apply flow cytometry to monitor immune responses and utilize next-generation sequencing
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Summerfield. The post-holder will have responsibility for carrying out rigorous and impactful research into human-AI interaction and alignment, with a particular focus on studying how humans and AI systems can
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manage multiple tasks in a milestone-orientated research environment. The qualification can be held (appointed to Grade 7) or submitted for examination/ nearing completion (appointed to Grade 6) by
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research programmes, specifically expertise in yeast cell culture, cell cycle analysis, molecular genetics, in vivo crosslinking, nanopore sequencing, and advanced microscopy (ScanR, Leica Thunder
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data from patient samples, including DNA methylation, histone modifications, single-cell transcriptomics and chromatin accessibility. You will contribute to the study and sequencing design, collaborate
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/workforce-and-learning-research-group ). The Compound Pressures project is a realist review funded by the NIHR HSDR programme. The project aims to understand how multiple and intersecting pressures, such as