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and molecular mechanisms that act within these sites, and to determine how these events lead to a balanced immune response in different conditions and physical constrains imposed by each organ
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contribute to the preparation of research reports and funding proposals, and may assist in coordinating aspects of this complex, multi-institutional research programme. With a current PhD/DPhil (or close to
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personal protection equipment (PPE). Your responsibilities will encompass developing new robotic benchmarking testing setup, hardware and controller of a robotic mechanical impactor, and data acquisition
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programme focused on deciphering the molecular architecture of the HLA antigen processing and editing machinery, and investigating how it shapes tumour-specific antigen presentation. Your project will focus
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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
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evaluations, attacks on and defensive mechanisms for safe multi-agent systems, powered by LLM and VLM models. Candidates should possess a PhD (or be near completion) in Machine Learning or a highly related
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Oxford’s Department of Orthopaedics (NDORMS) as well as collaborators in Bristol and Cardiff. You should have a PhD/DPhil (or be near completion) in robotics, computer vision, machine learning or a closely
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tomato and pepper as model systems. Work in Oxford will build on our extensive experience in studying bacterial virulence mechanisms and the role of the plant microenvironment in disease development
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Genetics. These residential courses run over eleven months, with two terms of scheduled teaching and one term dedicated to hands-on laboratory or computer-based research. In the MSc in Clinical Embryology
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and the concern that exposure to low frequency MFs may affect health. Whether the same or different mechanisms may be involved, is currently unknown. One mechanism has acquired experimental prominence