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the University, with additional appointments in Mathematics, Engineering and Chemistry. Durham's strong commitment to this area of research is also demonstrated through its support for the EPSRC Centre
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group. The position is associated with a project funded by the UK Engineering and Physical Sciences Research Council. The post holder will be expected to display the initiative and creativity, together
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can be engineered to improve Rubisco's catalytic activity. The research programme will provide insight into direct molecular responses to carbon dioxide in prokaryotic and eukaryotic photosynthetic
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programme. The particular emphasis of the project will be to examine the interaction between atherosclerotic plaque macrophages and neutrophil extracellular traps and how it impacts cellular function and
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manuscript within the lifetime of the appointment. Advanced microscopy, cutting-edge biophysical techniques and genetically engineered mouse models will be used. The labs are well-established and located in
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and leading a programme of numerical simulations relating to all aspects of our research on P-MoPAs; using particle-in-cell computer codes hosted on local and national high-performance computing
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aims to provide mathematical models of decontamination processes and is funded by the Defence Science and Technology Laboratory (Dstl). The approach to mathematical modelling is multifaceted, with
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. Advanced microscopy, cutting-edge biophysical techniques and genetically engineered mouse models will be used. The labs are well-established and located in the vibrant and supportive environment
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laboratory, technology and teaching facilities. Division of Signal Transduction Unit (DSTT): The Division of Signal Transduction Therapy (DSTT) was established in 1998. This division operates as a unique
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with an international reputation for excellence. The Department has a substantial research programme, with major funding from Medical Research Council (MRC), Wellcome Trust and National Institute