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are emerging to study plankton through the lens of size spectra. Size-based approaches link community structure to trophic dynamics, food web interactions, and carbon export processes. This project will use size
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performance under environmental stress. Training in geospatial analysis and ecological modelling will enable predictive insight into urban ecosystem dynamics. You will develop expertise in stakeholder
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central question in evolutionary biology and has profound implications for predicting host–pathogen dynamics in changing environments and biodiversity conservation. In this project, you will investigate
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alter physical habitat complexity and environmental conditions that support biodiversity? What are the short- and long-term effects of large wood on population dynamics and biodiversity? Which functional
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of their impacts and how to quantify them. There have been attempts to estimate impacts based on empirical approaches (e.g. Bradshaw et al. 2022), while dynamic process-based models are also known
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Lakes are dynamic methane sources where both benthic and pelagic processes shape net emissions. Sediments are the dominant methane producers, but growing evidence shows that phytoplankton can
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development. Key Features of the Project: Involvement in cutting-edge developmental and cognitive science research as part of UEA’s world leading Developmental Science Research Group and Developmental Dynamics
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Title: Dynamic Processes in Organic Functional Materials Supervisors: Professor Paul R. McGonigal & Dr Alyssa-Jennifer Avestro Start date: 1st October 2026 Applications are invited for a DPhil
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of Biogeography, 39, 842-854. WHITTAKER, R.J., FERNÁNDEZ-PALACIOS, J.M. & MATTHEWS, T.J. 2023. Island biogeography: geo-environmental dynamics, ecology, evolution, human impact, and conservation. Oxford University
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to ensure sustainability and require low harvesting effort. Q3. Where will they be by 2050? Fossil evidence shows that the geographic distributions of marine bivalves were extremely dynamic in response