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Methods In this project we want to provide a better understanding of how cloudiness affects, and is affected by, environmental factors called “cloud controlling factors”. Success of this goal will be
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10% screening rate. Factors contributing to low screening rates include shortages of trained expert ophthalmologists, lack of facilities in rural areas and inability of patients to attend clinics in
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of their choosing to tackle one of the most urgent climate questions: can the ocean floor help save us from climate change? Useful recruitment links: For information relating to the research project please contact
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Project details: Supervisors Dr Andy Cunliffe , Oppenheimer Associate Professor of Geospatial Ecology, University of Exeter Professor Ted Feldpausch , Professor of Terrestrial Ecology and Global
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Methods Per- and polyfluoroalkyl substances (PFAS) are a class of over 14,000 synthetic “forever chemicals” that persist in the environment and the human body, where they are linked to cancers, immune
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recombination, maintaining genetic linkage of toxin/antitoxin-like systems. As a result, these chromosomes accumulate deleterious mutations that are unaccounted for in existing gene drive models. The student will
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of these declines are missing. Genomic data can help address this gap through reconstructing changes in population size over time, while museum collections can elucidate morphological responses to historic changes
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Methods Archaea thrive in nearly every habitat on Earth, from salt lakes and volcanic springs to the human body. As major producers of methane and key players in the nitrogen cycle, they greatly impact
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existing models of reliability, performance, and safety. Similarly, in dynamic crowd scenarios, assumptions about orderly movement can break down due to panic or unexpected human behaviour, leading
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Methods This project investigates the cascading impacts of wildfires on the atmosphere, land systems, and human health. The core science questions are: How do wildfire emissions affect atmospheric