Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
59
datasets available to search
ShareScore release 0.9.0
Dataset results
59 results for “meteorite”
"Vaca Muerta" meteorite
"Vaca Muerta" meteorite ID no.: ZNG PAN B-V-57/38.1 Museum: The Geological Museum of the Institute of Geological Sciences, Polish Academy of Sciences https://muzea.malopolska.pl/en/objects-list/647 Digitalisation: RDW MIC, Małopolska's Virtual Museums project 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>
Nitrogen in the Orgueil meteorite: abundant ammonium among other reservoirs of variable isotopic compositions
<p>These data are relative to the paper</p> <p>"Nitrogen in the Orgueil meteorite: abundant ammonium among other reservoirs of variable isotopic compositions"</p> <p>The dataset consists in 20 Excel files that represent the data presented in the Figures and Tables of this paper.</p> <p>Note:</p> <ul> <li>Data from Table S5 of the paper were obtained from the data shown in Table S1, whose data file is provided here</li> <li>Data from Table S6 of the paper were obtained from the data shown in Figure S5, whose data file is provided here</li> </ul>
A unified intensity of the magnetic field in the protoplanetary disk from the Winchcombe meteorite
<p>Alternating field demagentisation data for the Winchcombe meteorite, published in 'A unified intensity of the magnetic field in the protoplanetary disk from the Winchcombe meteorite' (2023) <em>Meteoritics and Planetary Science</em>, <strong>59</strong>, 1194-1215, 10.1111/maps.14079</p>
Measuring the effects of regolith porosity on mid-IR spectra of the Allende meteorite
<p>This dataset contains three types of data: 1) Mid-Infrared (MIR; 5-35 micron) laboratory spectra of the Allende meteorite, 2) Measured parameters of the MIR Allende spectra, and 3) MIR spectra from the Spitzer Space Telescope of asteroids (85989) 1999 JD6, (234) Barbara, (5261) Eureka, and (114) Kassandra as described in Dausend et al., (in rev). </p> <p>Allende meteorite spectra files are labeled accordingly: Allende_[largest particle size]_[Allende ratio]</p> <p>Example: The file labeled Allende_63_70.txt contains spectra of Allende powder with 45-63 micron particle size, and an Allende:KBr ratio of 70:30.</p> <div>Additional information regarding Allende spectra feature parameters: </div> <div>We combined some features together for band parameter analyses to form ‘composite features’. A composite feature is made of two or more individual features that, together, form a larger spectral feature. In the spreadsheet these features are labeled with a ‘c’ prefix. The composite feature definitions are:</div> <div>cP_1 = P_1-2 (primary Christiansen Feature)</div> <div>cP_2 = P_3-4</div> <div>cP_3 = P_5-7</div> <div>cP_4 = P_3-7 (10 μm feature)</div> <div>cD_1 = D_2-6</div> <div> </div> <div>Corrections: </div> <ul> <li> <div>In the ‘Allende_peak_parameter’ and ‘Allende_dip_parameter’ spreadsheets, the ‘Area’ unit should be labeled as ‘μm’, not ‘μm^2’. </div> </li> </ul> <ul> <li>The last column of the ‘Wavenumbers’ sheet in “Allende_dip_parameters.xlsx” is labeled as ‘cP1 error’, but it should be ‘cD1 error’.</li> </ul>
Variations in the magnetic properties of meteoritic cloudy zone
<p>Data relating to Figure 5: Mossbauer data for the normalized phase fraction of kamacite, tetrataenite and antitaenite in the cloudy zone of three meteorites: the Esquel Main Group pallasite, the Tazewell IAB iron meteorite and the Estherville mesosiderite.</p> <p>Data relating to Figure 6: XMCD intensity distributions in the coarse cloudy zone in the Imilac Main Group pallasite and the Toluca IAB iron meteorite.</p> <p>Further details are provided in Nichols et al., 2020 submitted to <em>Geochemistry, Geophysics, Geosystems</em>.</p>
Stannern meteorite (NHMW-Min A21)
3D scan of the Stannern meteorite. With 2046 grams, this specimen is the biggest one of this fall in the NHMW´s collection On May 22, 1808, after a series of loud explosions, some 200–300 stones fell from the sky near Stannern/Stonařov, in the Czech Republic. A number of these stones were collected by Carl von Schreibers and were recognized as being very different from all other meteorites known at that time. It is the first recognized achondrite meteorite. A number of specimens of the Stannern meteorite can be seen in Hall 5 of the NHM Vienna including this one in showcase Number 47. **Meteorite**: Stannern (Achondrite / Eucrite-monomict) **Inventory number**: NHMW-Min A21 **Collection**: Natural History Museum Vienna, Dept. of Mineralogy & Petrography, Meteorite Coll. (curator: Ludovic Ferrière) Find out more about the NHMW [here](http://www.nhm-wien.ac.at/en). Scanned and edited by Viola Winkler (NHMW). Text by Ludovic Ferrière (NHMW) Scanner: Artec Space Spider. Infrastructure funded by the FFG. Source: Objaverse 1.0 / Sketchfab
Experimental data for the publication: "Probing the early stages of shock- induced chondritic meteorite formation at the mesoscale"
<p>In accordance with the expectations outlined in <em><strong>Clarifications of EPSRC expectations on research data management </strong></em>(09/10/14) this data has been made publicly available to complement the open access publication "Probing the early staged of chondritic meteorite formation at the mesoscale using single-bunch X-ray phase-contrast radiography at ESRF". </p> <p>There are three data sets. The folder entitled 'DarkFrames' contains the fitted median dark frame radiographs recorded on frames 1 and 2 of the camera. The folder entitled 'Flatfields' contains the mean flatfield radiographs recorded on frames 1 and 2 of the camera. The folder entitled 'Shots' contains the radiographs recorded on static and shock-compressed samples on frames 1 and 2 of the camera. </p>
Dataset for Globally synchronous meteorite rain paused the Great Ordovician Biodiversification Event
<p>Supporting information includes a detailed comparison of the stratigraphy of the YW2 borehole with the well-studied Puxi River section, the U-Pb isotopic data from the bentonite, and coupled carbon isotope data from the YW2 borehole.</p>
Supporting online material for Irradiation induced mineral changes of NWA10580 meteorite, Gyollai I. et al. 2024
<p>Online supporting material for the upcoming publication titled<span> Irradiation induced mineral changes of NWA10580 meteorite determined by infrared analysis by I. Gyollai et al. </span></p>
Data sets for "Bridgmanite freezing in shocked meteorites due to amorphization-induced stress" by Nishi et al.
<p>This is the datasets for the article "Bridgmanite freezing in shocked meteorites due to amorphization-induced stress" by Nishi et al. Tables S1 and S2 contain Experimental conditions and results. </p>
Hondritni meteorit
Hondritni meteorit Hondritic metheorite Source: Objaverse 1.0 / Sketchfab
Cabin Creek meteorite (NHMW-Min F6342)
3D scan of the 47.3 kilogram Cabin Creek iron meteorite, which due to its shape, is the best example of a so-called oriented meteorite. The fall took place at 3:17 pm on March 27th 1886. The meteorite was found in a 90 cm deep hole, not far from Cabin Creek in Arkansas (USA), after some loud sounds and whirring noises were heard as far as 120 km away from the impact point. The meteorite was generously donated by the factory-owner Albert Mayer von Gunthof. The Cabin Creek meteorite is Number 18 of the NHM Top 100 and can be seen in Hall 5 of the NHM Vienna. **Meteorite**: Cabin Creek (Medium octahedrite / IIIAB) **Inventory number**: NHMW-Min F6342 **Collection**: Natural History Museum Vienna, Dept. of Mineralogy & Petrography, Meteorite Coll. (curator: Ludovic Ferrière) Find out more about the NHMW [here](http://www.nhm-wien.ac.at/en). Scanned by Viola Winkler. The platform was added digitally. Text by Ludovic Ferrière (NHMW) Scanner: Artec Space Spider. Infrastructure funded by the FFG. Source: Objaverse 1.0 / Sketchfab
Evidence for asteroid scattering and distal solar system solids from meteorite paleomagnetism
<p>Alternating field demagentisation data for the Tagish Lake meteorite, published in 'Evidence for asteroid scatting and distal solars system solids from meteorite paleomagnetism' (2020) <em>The Astrophysical Journal</em>, <strong>892</strong>, 126</p>
Supplementary data Quantitative elemental mapping of chondritic meteorites using laser ablation-inductively coupled plasma-time of flight-mass spectrometry (LA-ICP-TOF-MS)
<p>Supplementary data Quantitative elemental mapping of chondritic meteorites using laser ablation-inductively coupled plasma-time of flight-mass spectrometry (LA-ICP-TOF-MS)English</p>
Tabor meteorite (NHMW-Min A10)
3D scan of the 2789 grams heavy Tabor meteorite specimen - the largest single piece of this meteorite that fell on July 3, 1753 in the Czech Republic. It was transferred from the 'k.k. Schatzkammer' (Imperial and Royal Treasury) to the Natural History Cabinet in 1778, together with the [Hraschina meteorite](https://skfb.ly/onAWB ), and is one of the founding objects of the Vienna meteorite collection. The Tabor meteorite can be seen in Hall 5 of the NHM Vienna in the large showcase 47. **Meteorite**: Tabor (Ordinary chondrite / H5) **Inventory number**: NHMW-Min A10 **Collection**: Natural History Museum Vienna, Dept. of Mineralogy & Petrography, Meteorite Coll. (curator: Ludovic Ferrière) Find out more about the NHMW [here](http://www.nhm-wien.ac.at/en). Scanned and edited by Anna Haider & Viola Winkler (NHMW) Text by Ludovic Ferrière (NHMW) Scanner: Artec Space Spider. Infrastructure funded by the FFG. Source: Objaverse 1.0 / Sketchfab
Figure 4 in The Dunbogan L6 Chondrite: A New Meteorite Fall from New South Wales, Australia
Figure 4. Secondary electron image of fusion crust of meteorite (lower right-hand area of Fig. 5) showing crystalline silicate material at top, bordered by a zone of crystallised glass (now containing bladed crystallites) plus one grain of metal phase (white), and with a thin rim of homogeneous glass at bottom of image. Scale bar 20 µm.
Insights on the origin of oldhamite in enstatites meteorites from Ca stable isotopes
Open the record for dataset details and reuse information.
Young's modulus of rock-forming minerals in HaH346 meteorites
<p>HaH346陨石中不同成岩矿物的纳米压痕测试结果存储在EXCEL电子表格中。 </p>
Fireball data for the Winchcombe meteorite
<p>This is the dataset associated with the following paper:</p> <p>McMullan et al. (2022), submitted to MAPS.</p> <p>Please cite the paper if re-using this dataset.</p>
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.