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will include advanced 2Dm synthesis, acoustic manipulation, and device fabrication in Exeter’s and Bath’s facilities, alongside simulation (thermal energy) and characterisation methods (Raman, AFM, SEM
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difference and/or finite element coupled process models validated against laboratory data to understand the fundamental behaviour of EK-ISL under varying geological conditions, including heterogeneity, dual
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together, in making decisions that are better for climate and nature and that leave no-one behind. Designing methods of data collection, data sharing, and collective decision-making to support such improved
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Methods The stratified atmospheric boundary layer is a key component in high-impact weather and climate predictions. Forecast applications include: polar surface temperatures, the timing of thunderstorms
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of patterns from drillhole data. Drillhole loggings, elemental concentration assays, and mineralogical data derived from techniques such as Mineral Liberation Analysis (MLA) or hyperspectral core scanning
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Methods Monitoring biodiversity at scale is vital for meeting global conservation targets, yet manual field surveys are too expensive and time consuming. Automated systems like camera traps now generate
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Methods Recent storms have exposed the vulnerability of power systems, creating pressures at local distribution and national transmission levels. In power systems, different parts work on very different
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, renewables, and emerging battery manufacturing—is an ideal hub for lithium supply development. Conventional evaporation-precipitation methods and direct lithium extraction struggle with low efficiency, modest
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Methods This large-scale project supports the conservation of UNESCO Heritage Sites (https://whc.unesco.org/en/list/), Biosphere reserves and/or GeoParks by analysing global and local geohazard databases
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Methods This collaborative project will investigate antimicrobial resistance (AMR) in bathing waters, focusing on relationships between AMR markers, metagenomic endpoints, and conventional microbial