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, by the end of the project, the student will be able to initiate and plan scientific studies, so will be provided with guided opportunities to develop their own ideas, develop and test hypotheses and
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diversity can help assess vulnerability and guide conservation of VMEs. This project will advance our understanding of VME functional ecology and develop science-based indicators of ecosystem health, directly
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function and develop science-based advice in fisheries management to prevent significant adverse impacts. This project will combine seafloor visual surveys, targeted sampling and AI-assisted image analyses
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position in a ‘landscape of fear’. Objective 3: Develop spatially explicit models to predict how nest footprints combine to generate landscape-level variation in microclimate, carbon flux, and plant
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pharmacological effects of altered gas and pressure on neuroplasticity. The PhD will provide an opportunity to develop and apply a range of skills in neuroimaging (e.g. fMRI, DTI, MRS), brain stimulation (e.g. TMS
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and international events, media training and co-authorship of additional non-PhD publications. This training will prepare the candidate for careers in academia, environmental consultancy, conservation
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concert with measurements of seawater sewage contamination, to better understand how the detailed lab studies relate to fish living in the wild. Training This is an exceptional opportunity to develop highly
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and modelling tools Person Specification: We seek a motivated individual with an interest in Earth Science and a desire to develop expertise in analytical techniques and modelling/basic programming