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Assessing tipping points in temperate coastal ecosystems: Integrating thermal landscapes, individual physiology, and community-level responses to heatwaves Lead Supervisor (DoS): Dr Manuela Truebano
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learning models to distinguish between normal physiological behaviour (e.g. diurnal rhythms, feeding responses) and abnormal stress-induced patterns will be central to the project. This requires
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Award Summary 100% fees covered, and a minimum tax-free annual living allowance of £20,780 (2025/26 UKRI rate). Additional project costs will also be provided. Overview Coastal flooding poses a
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surveys, laboratory experiments, and advanced analytical tools. Water and plankton samples from UK coastal waters will be analysed to quantify MNP types, sizes, and concentrations, correlated with plankton
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this information affect behavioural decisions before and during combat? This PhD project will tackle these questions using a combination of evolutionary modelling and behavioural experiments in a wild population of
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analyses to explore biodiversity trends, detect climate-induced shifts, and uncover ecosystem dynamics. The findings will advance predictive modelling and decision-support tools for sustainable coastal and
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. Investigation of the unique year-round Rothera CO2 timeseries (2010-2020) has highlighted how wintertime sea ice cover controls CO2 uptake by Antarctic coastal waters [1]. Rapid sea ice decline, strong glacial