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Ground motions are estimated for different rupture scenarios using a ground motion characterisation (GMC) model that consists of five multiple ground motion prediction equations considered to be applicable to the region. The GMPEs are included in a logic tree where the weights are informed by the fit between observed and modelled ground motions. The GMC model also includes the host-to-target adjustments and a single-station sigma model. Hazard is calculated at 4585 individual points spaced at 0.125° in latitude and 0.25° in longitude for peak ground acceleration (PGA) and spectral acceleration at 0.2 s (SA0.2 s) and 1.0 s (SA1.0 s) for 5% damping and rock conditions and the return periods of 95, 475, 1100, 2475, and 5000 years. This is the first time that maps of the seismic hazard at short (0.2 s) and long periods (1.0 s) have been produced for UK waters. Hazard curves, uniform hazard spectra, and disaggregation analysis have been calculated for three offshore carbon capture and storage sites (Endurance, Acorn, and HyNet North West). New offshore hazard maps for the UK waters will support UK decarbonisation by providing owners and operators of offshore structures with robust estimates of seismic hazard for new and existing sites. The results will also inform regulatory decisions to ensure safe operating practices in the industry and help identify areas of higher hazard where further site-specific studies might be needed. Finally, it will provide a robust baseline for tectonic seismic activity in the North Sea that can be used to help discriminate any seismicity induced by operations, such as CCS, in the event it occurs. The technical report by Mosca et al. 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restrictions","link":"https://schemas.isotc211.org/schemas/19139/resources/codelist/gmxCodelists.xml#MD_RestrictionCode","text":"otherRestrictions"}],"cl_function":[{"key":"download","default":"Download","langeng":"Download","link":"https://schemas.isotc211.org/schemas/19139/resources/codelist/gmxCodelists.xml#CI_OnLineFunctionCode","text":"download"},{"key":"information","default":"Information","langeng":"Information","link":"https://schemas.isotc211.org/schemas/19139/resources/codelist/gmxCodelists.xml#CI_OnLineFunctionCode","text":"information"}],"resourceTitleObject":{"default":"Dental Microwear Texture Analysis (DMTA) of tooth surfaces of fossil wolves from Britain and modern wolves from Poland","langeng":"Dental Microwear Texture Analysis (DMTA) of tooth surfaces of fossil wolves from Britain and modern wolves from Poland"},"creationDateForResource":["2025-10-03"],"creationYearForResource":"2025","creationMonthForResource":"2025-10","resourceDate":[{"type":"creation","date":"2025-10-03T00:00:00.000Z"}],"resourceTemporalDateRange":[{"gte":"2025-10-03T00:00:00.000Z","lte":"2025-10-03T00:00:00.000Z"},{"gte":"2023-03-22T00:00:00.000Z","lte":"2025-10-02T00:00:00.000Z"}],"resourceIdentifier":[{"code":"http://data.bgs.ac.uk/id/dataHolding/13608540","codeSpace":"","link":""}],"resourceAbstractObject":{"default":"This dataset has been superseded, the latest version is version 2, http://data.bgs.ac.uk/id/dataHolding/13608613 Dental microwear texture analysis (DMTA) raw data. These are values from scale-sensitive fractal analysis (SSFA), and areal surface texture analysis (based on a suite of parameters, most of which are defined by ISO-25718-2) for dental microwear texture analysis of tooth surfaces of wolves from Britain (MIS 5e & MIS 7 a-c) and modern Poland wolves. This study examines the dietary adaptability of European grey wolves using dental microwear texture analysis (DMTA). We compare modern Polish wolf populations from the present interglacial (Holocene), with fossil specimens from two contrasting Pleistocene interglacials: the warmer Last Interglacial (Marine Oxygen Isotope Stage [MIS] 5e) and the cooler Penultimate Interglacial (MIS 7a–c). These datasets offer new insights into the palaeoclimatic and palaeoenvironmental conditions under which grey wolves endured climate change in the past, free of anthropogenic influence. And allows the identification of hitherto-hidden ecological stress today, thereby highlighting potential vulnerabilities in modern populations under current and future climate change.","langeng":"This dataset has been superseded, the latest version is version 2, http://data.bgs.ac.uk/id/dataHolding/13608613 Dental microwear texture analysis (DMTA) raw data. These are values from scale-sensitive fractal analysis (SSFA), and areal surface texture analysis (based on a suite of parameters, most of which are defined by ISO-25718-2) for dental microwear texture analysis of tooth surfaces of wolves from Britain (MIS 5e & MIS 7 a-c) and modern Poland wolves. This study examines the dietary adaptability of European grey wolves using dental microwear texture analysis (DMTA). We compare modern Polish wolf populations from the present interglacial (Holocene), with fossil specimens from two contrasting Pleistocene interglacials: the warmer Last Interglacial (Marine Oxygen Isotope Stage [MIS] 5e) and the cooler Penultimate Interglacial (MIS 7a–c). These datasets offer new insights into the palaeoclimatic and palaeoenvironmental conditions under which grey wolves endured climate change in the past, free of anthropogenic influence. 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Sea"},"creationDateForResource":["2025-10-14"],"creationYearForResource":"2025","creationMonthForResource":"2025-10","resourceDate":[{"type":"creation","date":"2025-10-14T00:00:00.000Z"}],"resourceTemporalDateRange":[{"gte":"2025-10-14T00:00:00.000Z","lte":"2025-10-14T00:00:00.000Z"},{"gte":"2024-01-01T00:00:00.000Z","lte":"2025-09-30T00:00:00.000Z"}],"resourceIdentifier":[{"code":"http://data.bgs.ac.uk/id/dataHolding/13608554","codeSpace":"","link":""}],"resourceAbstractObject":{"default":"Mineral and glass geochemical analyses (spot analyses) of samples recovered during IODP Expedition 398 (Site U1595). Site U1595 (proposed Site CSK-08B) is located in the southern basin of the Santorini caldera at 291 meters below sea level (mbsl). It was drilled in three holes (U1595A-U1595C) to a maximum recovery depth of 127.0 meters below seafloor. Some data files also contain SEM-BSE images of volcanic ash particles. Abbreviations used: n.d. = not determined; b.d. = below detection. Detection limits for volatiles in glass: Cl = 57 ppm, F = 140 ppm, S = 56 ppm Mineral and glass geochemical compositions were determined by electron probe micro-analysis, using facilities at the Natural History Museum London and at the University of Leeds. SEM-BSE images were generated at Keele University. Data analysis was supported by NERC - UK IODP Phase 4 Moratorium Award, NERC Grant NE/X016374/1, Ralf Gertisser. For sample context, see: https://publications.iodp.org/proceedings/398/398title.html https://doi.org/10.14379/iodp.proc.398.109.2024","langeng":"Mineral and glass geochemical analyses (spot analyses) of samples recovered during IODP Expedition 398 (Site U1595). Site U1595 (proposed Site CSK-08B) is located in the southern basin of the Santorini caldera at 291 meters below sea level (mbsl). It was drilled in three holes (U1595A-U1595C) to a maximum recovery depth of 127.0 meters below seafloor. Some data files also contain SEM-BSE images of volcanic ash particles. Abbreviations used: n.d. = not determined; b.d. = below detection. Detection limits for volatiles in glass: Cl = 57 ppm, F = 140 ppm, S = 56 ppm Mineral and glass geochemical compositions were determined by electron probe micro-analysis, using facilities at the Natural History Museum London and at the University of Leeds. SEM-BSE images were generated at Keele University. Data analysis was supported by NERC - UK IODP Phase 4 Moratorium Award, NERC Grant NE/X016374/1, Ralf Gertisser. 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