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319 results for “Lunar”
Datasets for 'Multiple impact sources for light plains around the lunar south pole' research paper
<p>The attached datasets are the shapefiles (areas and crater measurements) for the article ' Multiple impact sources for light plains around the lunar south pole'.</p> <p>The shapefiles can be directly imported in ArcPRO. </p> <p>Also attached is a .png file (image) of the study region with the 22 dated light plains and smooth crater floors color-coded by age, Fig. 4 in the research paper.</p>
Global maps of the lunar 3-µm absorption band
<p>This data set contains maps of the moon in simple cylindrical projection which represent the integrated depth of the absorption band at 3 μm wavelength (OHIBD) at different local times of day (morning, noon and late afternoon). These maps were obtained by analyzing the data from the Moon Mineralogy Mapper (M³) hyperspectral camera carried by the Chandrayaan-1 spacecraft. They are each provided as GEOTIFF files. For the construction of the maps, a roughness (RMS slope) of the regolith surface of 0°, 9° and 20° was assumed. The analysis method used to generate the maps is described in the following publication:</p> <p>Wöhler, C., Grumpe, A., Berezhnoy, A. A., Shevchenko, V. V., 2017. Time-of-day–dependent global distribution of lunar surficial water/hydroxyl. Science Advances 3(9), e1701286, DOI 10.1126/sciadv.1701286</p> <p> </p>
Data archive for "Rock abundance on the lunar mare on surfaces of different age: Implications for regolith evolution and thickness"
<p>This is associated data for the study "<strong>Rock abundance on the lunar mare on surfaces of different age: Implications for regolith evolution and thickness </strong>" in GRL.</p> <p>The zipfile FT2014-Dense50kmN-n800mto5km.tif.zip is a raster of neighborhood crater frequencies from Fassett and Thomson 2014 (JGR) that are used for the age information in this paper. </p> <p>The csv file is the extracted rock abundance for every frequency pixel in this dataset. </p> <p>A github software release associated with the paper is also available on <a href="https://zenodo.org/badge/latestdoi/417542233">as a Zenodo software repository</a>, as well as on <a href="https://github.com/cfassett/MareRockAbundances">Github</a>.</p>
The Effects of Terrain Properties upon the Small Crater Population Distribution at Giordano Bruno: Implications for Lunar Chronology
<p>Derived data files from Williams et al. (2022) The Effects of Terrain Properties upon the Small Crater Population Distribution at Giordano Bruno: Implications for Lunar Chronology, submitted.</p>
Data from: Detecting sub-micron space weathering effects in lunar grains with synchrotron infrared nanospectroscopy
<p>Space weathering processes induce changes to the physical, chemical, and optical properties of space-exposed soil grains. For the Moon, space weathering causes reddening, darkening, and diminished contrast in reflectance spectra over visible and near-infrared wavelengths. The physical and chemical changes responsible for these optical effects occur on scales below the diffraction limit of traditional far-field spectroscopic techniques. Recently developed super-resolution spectroscopic techniques provide an opportunity to understand better the optical effects of space weathering on the sub-micrometer length scale. This paper uses synchrotron infrared nanospectroscopy to examine depth-profile samples from two mature lunar soils in the mid-infrared, 1500–700 cm<sup>-1</sup> (6.7–14.3 µm). Our findings are broadly consistent with prior bulk observations and theoretical models of space weathered spectra of lunar materials. These results provide a direct spatial link between the physical/chemical changes in space-exposed grain surfaces and spectral changes of space-weathered bodies.</p>
Dataset: Determination of Broadband Complex EM Parameters of Powdered Materials Part B: Ilmenite-Bearing Lunar Analogue Materials
<p>Data from Determination of Broadband Complex EM Parameters of Powdered Materials Part B: Ilmenite-Bearing Lunar Analogue Materials</p>
The Variability of Lunar Mare Basalt Properties from Surface Rock Abundance
<p>Derived data from Elder et al. (2022) The Variability of Lunar Mare Basalt Properties from Surface Rock Abundance, submitted.</p>
Dataset of the research article "A semi-automated analysis of displacement-to-length scaling of the grabens affecting lunar Floor-Fractured craters"
<p>This dataset includes all the raster data (DEM, orthoimage, slope) and vectors (shapefiles) used in our research, investigating the relationships between displacement and length of the faults affecting Lunar Floor-Fractured craters.</p>
Selected boulders at Copernicus central peak from L. Sun and P. Lucey Lunar boulder study work
<p>This file contains the location of 54 boulders and soils on Copernicus central peak that were studied by Sun L. and Lucey P. G. in their lunar boulder study paper. This file can be uploaded to the LROC Quickmap website (https://quickmap.lroc.asu.edu/) for checking the location of each boulder and their nearby soils.</p>
Molecular Dynamics Simulation of Solar Wind Implantation in the Permanently Shadowed Regions on the Lunar Surface
<p>Supporting data for "Molecular Dynamics Simulation of Solar Wind Implantation in the Permanently Shadowed Regions on the Lunar Surface"</p>
EXPLORE Machine Learning Lunar Data Challenges 2022 - QGIS project
<p>This dataset contains the the EXPLORE Machine Learning Data Challenge 2022 QGIS project.</p> <p>The project embed the following Archytas Dome layers:</p> <p><strong>Raster</strong></p> <ul> <li>Narrow Angle Camera (NAC)</li> <li>DEM derived from NAC</li> <li>Slope computer on DEM</li> </ul> <p><strong>Vectorial</strong></p> <ul> <li>POIs - Points Of Interest to be used in STEP 3 </li> </ul> <p> </p> <p> </p> <p> </p> <p>More information at: https://exploredatachallenges.space/</p> <p> </p> <p>Images were processed from NASA PDS raw data using USGS ISIS and NASA ASP tools.</p>
Lunar Command Module
A basic model of the Lunar Command Module of the NASA Apollo moon misions Source: Objaverse 1.0 / Sketchfab
Lunar New Year (Kids Drawing)
I created this with Gravety Sketch on Oculus Quest after a picture drawn by my daughter. This was my first real attempt in 3D Modeling with Gravety Sketch. Source: Objaverse 1.0 / Sketchfab
Lunar Lander
A model I did in blender 2.79 for the Apollo Lunar lander. I've never uploaded a blender file to sketchfab, so I don't know how it will turn out. I may reupload this as an obj if it doesn't work as well as it should. Sadly, the blender materials didn't transfer properly. Source: Objaverse 1.0 / Sketchfab
Geochemistry and chronology of lunar KREEP-rich regolith breccia meteorite Northwest Africa 4485: Implications for the Imbrium impact event and high alkali suite
<p>The dataset includes chemical composition, chronology, and spectral data of lunar meteorite Northwest Africa 4485 (Table 1 and Table 2, Table S1 to S4) for the manuscript "Geochemistry and chronology of lunar KREEP-rich regolith breccia meteorite Northwest Africa 4485: Implications for the Imbrium impact event and high alkali suite".</p>
Thermal Equilibrium States and Timescales of Lunar Cold Traps via Low-Temperature Thermoluminescence
<p>This data set contains induced thermoluminescence glow curves following the irradiation with 90Sr beta particles, ranging in absored radiatoon doses of ~70 to 52,800 Gy.</p> <p>The glow curve data are compiled in one .csv file.</p> <p>The column headers indicate the temperature in Kelvin (K) at which the TL intensity (Int) was recorded and the absorbed dose in Gray (Gy).</p>
Analysis of thermal and dielectric loss features of lunar regolith considering real-time effect solar irradiance
<p>ESI data for "Analysis of thermal and dielectric loss features of lunar regolith considering real-time effect solar irradiance".</p>
Ionospheric Connection Explorer (ICON) EUV Lunar Calibration Data
<p>This dataset provides the processed lunar calibraton data for the Ionospheric Connection Explorer Extreme Ultraviolet Spectrometer (ICON EUV) that were used in the study by Sirk et al. (2024, submitted).</p>
The laboratory experiment for the light scattering on 3D printed lunar surface simulants at the small phase angles
<p>Data from a study submitted to JGR-Planets about a laboratory experiment of lunar fairy castle structures printed using a 3D printer. (last update: 2024.07.23)<br><br></p> <p>1. data.xlsx<br> * Each Excel sheet corresponds to the data of the sample used in the experiment.<br>(e.g., 80-40-10: sheet for the experimental data of sample "80-40-10")</p> <p>2. luna16_distant.csv and luna20_distant.csv<br>* These files contain data obtained by digitizing Figures 4 and 8 from Velichko et al. (2022) (doi: 10.1016/j.pss.2022.105475). <br>* The data obtained from distant locations of each Luna 16 and Luna 20 landing sites (See Velichko et al. (2022)).</p> <p>3. velikodsky_param.csv<br>*This file contains parameters described in Table 3 of Velikodsky et al. (2011) (doi: 10.1016/j.icarus.2011.04.021)</p> <p>4. readme.txt</p> <p>* Description of each file in detail.</p>
Fig. 1 in Seasonal, Lunar and Tidal Influences on Habitat Use of Indo-Pacific Humpback Dolphins in Beibu Gulf, China.
Fig. 1. Map of the study site: the Beibu Gulf, China.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.