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of the Barron Group, including those conducting research in humans, including patient populations. The post holder will be part of the Barron Group based at the MRC BNDU and OxCIN. The Group has a strong track
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to completion) in atmospheric physics or related fields. Experience in atmospheric physics and track record in atmospheric modelling and the constraint of atmospheric models with observations are essential as
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advanced optical spectroscopic techniques and modelling, e.g. ultrafast (sub-picosecond) photoluminescence, absorption or photoconductivity techniques. Knowledge of semiconductor physics and a track record
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ability to manage your own academic research and associated activities. You will have excellent communication skills including a track record of contributing to publications and presentations. Experience
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microscopy, as well as in developing approaches to track cell migration in the spleen in real time. Extensive experience with immunization and infection models is also essential. Experience in independently
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a doctorate in a relevant humanities discipline, have a track record of outstanding research, and have a good publication record. You will ideally have experience of public engagement work. The duties
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, image analysis and tissue biology. Experience in the tumour microenvironment and immune oncology is essential. You will have an excellent publication track record and have the ability to manage your own
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computational cognitive neuroscience/psychology, computer science, or relevant quantitative field, and a demonstrably strong track record of scientific publication and novel idea generation. You will have strong
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of which will support your contributions to high-quality, translational cancer research. You will have a strong track record of research excellence, including first-author publications in peer-reviewed
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should have a proven track record demonstrating high quality research on topics which include, or are closely related to, the understanding and behaviour of new fundamental physics around extreme compact