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Particle physics, nuclear physics, condensed matter, plasma physics, optics, acoustics, quantum mechanics
6,992 datasets
Near-real-time global active fire and thermal anomaly detections from NASA's FIRMS, derived from VIIRS sensors. Data is continuously updated, typically within 3 hours of satellite acquisition, and is available in 24-hour, 48-hour, and 7-day time windows. Files are provided in SHP, KML, and CSV formats via external links to NASA-hosted resources.
Near-real-time active fire and thermal anomaly detections from NASA's FIRMS, derived from MODIS sensors on Terra (since 2000) and Aqua (since 2002) satellites. The data covers the contiguous United States and Hawaii, with files updated typically within 3 hours of satellite acquisition. Files are available in SHP, KML, and CSV formats for the last 24 hours, 48 hours, and 7 days.
NASA's Fire Information for Resource Management System provides near-real-time active fire and thermal anomaly detections covering Canada, derived from the Landsat sensor family. The data is continuously updated, typically within 3 hours of satellite acquisition, and is available in SHP, KML, and CSV formats. Files are hosted by NASA and cover time windows of the last 24 hours, 48 hours, and 7 days.
NASA FIRMS provides near-real-time active fire and thermal anomaly detections for Canada from the VIIRS sensor family. Data is updated continuously, typically within 3 hours of satellite acquisition, and is available in SHP, KML, and CSV formats for the last 24 hours, 48 hours, and 7 days. Suomi-NPP, NOAA-20, and NOAA-21 satellites have contributed data since 2011.
Near-real-time active fire and thermal anomaly detections covering Canada, derived from NASA's MODIS sensors on the Terra and Aqua satellites. The data is provided by NASA's Fire Information for Resource Management System (FIRMS) and is continuously updated, typically within 3 hours of satellite acquisition. Files are available in SHP, KML, and CSV formats for time windows of the last 24 hours, 48 hours, and 7 days.
Near-real-time active fire and thermal anomaly detections from NASA's Fire Information for Resource Management System (FIRMS). The data is derived from MODIS sensors on Terra and Aqua satellites, with coverage starting from 2000 and 2002 respectively. Files are updated within approximately 3 hours of satellite acquisition and are available in SHP, KML, and CSV formats for the last 24 hours, 48 hours, and 7 days.
OSNI Largescale NI Outline is a polygon dataset defining the land area of Northern Ireland. It has been derived from Ordnance Survey Northern Ireland (OSNI) Largescale data, topologically cleansed and attributed to create a seamless geographic dataset. The data is available under an open government license and is hosted on multiple open data platforms.
A study investigated contagious agalactia in flocks from Pernambuco State, Brazil. The research involved 225 goats and 63 ewes, with 288 milk samples and 100 vaginal swabs collected. PCR assays identified Mycoplasma agalactiae and Mycoplasma mycoides cluster DNA, and risk factors for infection were analyzed.
George E. Newman of Yale University conducted six experiments examining the effects of thank-you gifts on charitable donations. The experiments involved a wide variety of charities and gift types, testing both hypothetical and real donations. Results indicate that offering gifts reduces donations, a counterintuitive effect not explained by charity quality, gift desirability, or anchoring.
IMC data from Wang et al. includes raw multiplexed images, cell masks, and clinical information for triple negative breast cancer patients. The dataset is associated with a 2023 study from the University of Cambridge investigating spatial predictors of immunotherapy response. Processed single-cell data and analysis code for reproducing published figures are also provided.
Wilson Ricks from Princeton University provides supplementary data for modeling Enhanced Geothermal Systems (EGS) in decarbonized grids. The repository contains costing models, reservoir simulations, and power system model inputs and outputs. Data likely includes resource depth, temperature, and location characteristics for EGS cost and performance analysis.
Data for the figures in the paper 'Breathing dissipative solitons in optical microresonators' (doi:10.1038/s41467-017-00719-w) is provided in MATLAB .mat files. Each file contains structured data for a specific figure, with fields for figure panels and subfields for X, Y, and Z data arrays. The dataset and accompanying plotting scripts were created by Erwan Lucas of École Polytechnique Fédérale de Lausanne.
A database of 13,628 materials with predicted topological properties from high-throughput first-principles calculations. It contains electronic band structures and topological indices for non-magnetic phases, calculated using the Quantum ESPRESSO package and Z2pack code. The database was created by Quansheng Wu at École Polytechnique Fédérale de Lausanne and identifies over 4,000 topologically non-trivial materials.
Spectral absorption, scattering, and backscattering coefficients were measured in the near-surface layer of the Fitzroy Estuary and Keppel Bay system during the dry season. The dataset, hosted by the Australian Ocean Data Network, includes discrete measurements of phytoplankton, nonalgal particles, and colored dissolved organic matter absorption, plus concentrations of pigments and suspended matter. Particle scattering and dissolved absorption decreased by 2 orders of magnitude from estuary to bay, while nonalgal particle absorption decreased by 3 orders of magnitude.
Nine 1D burial thermal and petroleum generation history models constructed for the Adavale Basin using existing open file data. The models, presented at the 2023 Australian Exploration Geoscience Conference, estimate hydrocarbon generation potential by forward-modeling geological parameters from well completion reports. Results indicate full maturation of Devonian source rocks, with generation occurring during the Carboniferous and Late Cretaceous periods.
One of 55 tiles covering Austria, this 1-meter resolution digital terrain model describes the bare earth surface. The ALS DTM elevation grid was recorded using airborne laser scanning technologies and is a cooperation product of Austrian federal and state spatial data providers. Data is georeferenced in European reference systems and has a stated cut-off date of September 15, 2021.
The ALS DTM height grid is a digital terrain elevation model product describing Austria's bare-earth surface. It is a 1-meter resolution grid of elevation points, recorded via airborne laser scanning and georeferenced in European coordinate systems. This specific file is one of 55 tiles that collectively cover the entire territory of Austria, produced through a cooperation of Austrian federal and state spatial data providers.
One of 55 tiles comprising a complete 1-meter resolution digital terrain model covering Austria. The ALS DTM elevation grid was recorded using airborne laser scanning technologies and describes the bare earth surface without vegetation. This tile is a cooperation product of Austrian federal and state spatial data providers, with a cut-off date of September 15, 2022.
One tile from a 55-tile ALS DTM height grid covering Austria, describing the earth's surface without vegetation. The data is a regular 1-meter grid georeferenced in European coordinate systems, recorded via airborne laser scanning technologies. This product is a cooperation between Austrian federal and state spatial data providers.
The ALS DTM height grid is a product of Austrian federal and state spatial data providers. It describes the earth's natural surface without vegetation using a regular 1-meter grid, created via airborne laser scanning. This is one of 55 tiles that together cover the entire territory of Austria.