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1,196 results for “Minerals”
FIGURES 21–26 in Two new genera of Eulophinae (Hymenoptera: Eulophidae), including four new species parasitoids on Gracillariidae (Lepidoptera) leaf miners in Costa Rica
FIGURES 21–26. Petiolachertus & Macroplectron spp. nov.; 21–23. Head in frontal view; 21 M. nishidai, female paratype; 22 M. nishidai, male paratype; 23 M. safron, female holotype; 24–26. Vertex; 24 M. nishidai, female holotype; 25 M. safron, female holotype; 26 P. castor, female holotype.
FIGURES 14–20 in Two new genera of Eulophinae (Hymenoptera: Eulophidae), including four new species parasitoids on Gracillariidae (Lepidoptera) leaf miners in Costa Rica
FIGURES 14–20. Petiolachertus & Macroplectron spp. nov., head and antennae in lateral view; 14–15. P. castor; 14 female holotype; 15 male paratype; 16–17. P. pollux; 16 female paratype; 17 male paratype; 18–19. M. nishidai; 18 female holotype; 19 male paratype; 20 M. safron, female holotype.
FIGURES 1–7 in Two new genera of Eulophinae (Hymenoptera: Eulophidae), including four new species parasitoids on Gracillariidae (Lepidoptera) leaf miners in Costa Rica
FIGURES 1–7. Petiolachertus spp. nov., females; 1–4. P. castor; 1 holotype, habitus in lateral view; 2 paratype, head+mesosoma in dorsal view; 3 paratype, metasoma in dorsal view; 4 holotype, head in frontal view; 5–7. P. pollux; 5 holotype, habitus in lateral view; 6 paratype, habitus in dorsal view; 7 paratype, head in frontal view.
FIGURES 8–13 in Two new genera of Eulophinae (Hymenoptera: Eulophidae), including four new species parasitoids on Gracillariidae (Lepidoptera) leaf miners in Costa Rica
FIGURES 8–13. Macroplectron spp. nov.; 8–11. M. nishidai; 8 female holotype, habitus in lateral view; 9 female holotype, habitus in dorsal view; 10 male paratype, habitus in lateral view; 11 male paratype, habitus in dorsal view; 12–13. M. safron, female holotype; 12 habitus in lateral view; 13 habitus in dorsal view.
major and trace compositions of minerals in NWA 11479 by Jingyou Chen
<p>this file is dataset of chemical compositions of minerals in NWA 11479, it is easy found by the Reviewer and Editor...</p>
Complementary dataset to Granulation compared to co-application of biochar plus mineral fertilizer and its impacts on crop growth and nutrient leaching.
Open the record for dataset details and reuse information.
Geodiversity index of the proposed opening area for deep-sea mineral explorations in Norway.
<p>Dataset containing sub-indexes of bathymetry, seafloor roughness, geomorphology and sediment thickness as well as a geodiversity index of the proposed opening area for deep-sea mineral explorations in het Norwegian Sea. </p>
(Data on) Regenerated cellulose-mineral composite films formed from dissolution in ionic liquid: comparing calcium carbonate and kaolinite particulate fillers
<p>This dataset covers outcomes of research performed by the authors at Aalto University during years 2023-2024. More indepth analysis of the results will be provided in a separate scientific publication.</p>
Preferential adsorption and coprecipitation of permafrost organic matter with poorly crystalline iron minerals
<p>This dataset contains the data necessary to replicate the figures associated with the manuscript: "Preferential adsorption and coprecipitation of permafrost organic matter with poorly crystalline iron minerals".</p>
Dataset for Marine Geology publication "Estimation of turbidite source area in late Pleistocene to Holocene around Kikai Island based on mineral and biogenic calcium carbonate composition"
<p>This dataset is associated with the academic paper published in "Estimation of turbidite source area in late Pleistocene to Holocene around Kikai Island based on mineral and biogenic calcium carbonate composition" For details of the paper, please refer to the link below.<br><a href="https://doi.org/10.1016/j.margeo.2025.107593">https://doi.org/10.1016/j.margeo.2025.107593</a></p> <p> </p>
The Fate of Nitrogen during Early Silicate Differentiation of Rocky Bodies Constrained by Experimental Mineral-Melt Partitioning
Open the record for dataset details and reuse information.
npm-miner dataset
<p>This dataset contains the static analysis results of the 2000 top-downloaded packages included in npm-registry</p>
A 2D hyperspectral library of mineral reflectance, from 900 to 2500nm - Raw data
<p>Each <strong>zip</strong> file contains the text description file: <strong>description.txt</strong>. It also contains the data of one or two measurement, <strong>A</strong> and possibly B. The files are named as follows (<strong>####</strong> is the sample ID, <strong>@</strong> the letter of the measurement):</p> <ul> <li><strong>####-@.ply</strong> and <strong>####-@.png</strong>: 3D reconstruction in Stanford PLY format, and associated texture file.</li> <li><strong>@-im-000.jpg</strong>, <strong>@-im-010.jpg</strong>, ..., <strong>@-im-360.jpg</strong>: JPEG images of the sample, the angle is in degrees. 0 degree correspond to the position used during scanning.</li> <li><strong>@.scan.h5</strong>: HDF5 file containing the raw scan data.</li> </ul> <p>The zip files correspond to the sample IDs, according to the following table:</p> <pre><code>Mineral Sample IDs Datapoints ---------------------------------------------------------------- Actinolite 0020, 0021, 0064 56840 Albite 0107 22521 Almandine 0025, 0026, 0073, 0074 17425 Andalusite 0014 18862 Anhydrite 0004 30832 Apatite 0089(2), 0090(2) 69062 Aragonite 0061 40111 Arsenopyrite 0087(2) 66333 Augite 0038 8503 Barite 0006 37130 Beryl 0075(2) 37743 Biotite 0049(2), 0050 45400 Blende 0086(2) 15596 Bronzite 0112 50452 Bytownite 0103 14666 Calcite 0010, 0011, 0052, 0078, 0079 112501 Cassiterite 0119, 0120 38535 Celestite 0000, 0001, 0002 56075 Chalcedony 0108(2), 0109(2) 96431 Chalcopyrite 0106 19375 Chlorite 0013 75802 Clinochlore 0126 45301 Coal 0081, 0082 44664 Copper 0101 14556 Diopside 0069 58959 Dolomite 0091(2), 0092(2) 76810 Enstatite 0047 31072 Epidote 0023, 0024 47306 Fluorite 0003(2), 0012(2) 98638 Galena 0053, 0054 17931 Garnet 0115 27331 Glaucophane 0016, 0017, 0076, 0077 200830 Goethite 0114 10717 Graphite 0083, 0084 20047 Grossular 0030, 0031 46592 Gypsum 0005(2), 0007, 0063 159829 Halite 0008, 0056 66201 Halloysite 0121, 0122 102028 Hematite 0039(2), 0085(2), 0095, 0096 165228 Hornblende 0046 9175 Hypersthene 0111 62932 Ilmenite 0116 16256 Kaolinite 0113 20764 Kyanite 0029 12320 Labradorite 0088(2), 0104(2) 62762 Limonite 0128, 0129 64550 Magnetite 0055, 0072 7103 Microcline 0071 60699 Montmorillonite 0123, 0124, 0125 87986 Muscovite 0034 62481 Nepheline 0097(2) 51930 Olivine 0065 7965 Omphacite 0019, 0067 108032 Opal 0102 34404 Orthoclase 0057 49824 Phlogopite 0045, 0070 105119 Pyrite 0042, 0048 31598 Pyrolusite 0117, 0118 45534 Pyrrhotite 0051 21572 Quartz 0009(2), 0035 126760 Rutile 0093 4959 Sanidine 0099(2) 49260 Serpentine 0018, 0068 78937 Siderite 0080 11651 Silicified wood 0127(2) 92935 Sillimanite 0032, 0033 70546 Sodalite 0043, 0060 61852 Sphalerite 0105 27485 Staurolite 0027, 0028, 0066 30628 Sulfur 0036, 0037 34751 Talc 0022, 0040, 0041, 0058, 0059 138317 Titanite 0094 4121 Tourmaline 0044, 0062 68419 Tremolite 0098(2), 0100 70913 Zircon 0110(2) 5110 </code></pre> <p> </p>
A 2D hyperspectral library of mineral reflectance, from 900 to 2500nm - High dynamic range data
<p>Each <strong>zip</strong> file contains the text description file: <strong>description.txt</strong>. It also contains the data of one or two measurement, <strong>A</strong> and possibly B. The files are named as follows (<strong>####</strong> is the sample ID, <strong>@</strong> the letter of the measurement):</p> <ul> <li><strong>####-@.ply</strong> and <strong>####-@.png</strong>: 3D reconstruction in Stanford PLY format, and associated texture file.</li> <li><strong>@-im-000.jpg</strong>, <strong>@-im-010.jpg</strong>, ..., <strong>@-im-360.jpg</strong>: JPEG images of the sample, the angle is in degrees. 0 degree correspond to the position used during scanning.</li> <li><strong>@.hdr.h5</strong>: HDF5 file containing the HDR scan data.</li> </ul> <p>The zip files correspond to the sample IDs, according to the following table:</p> <pre><code>Mineral Sample IDs Datapoints ---------------------------------------------------------------- Actinolite 0020, 0021, 0064 56840 Albite 0107 22521 Almandine 0025, 0026, 0073, 0074 17425 Andalusite 0014 18862 Anhydrite 0004 30832 Apatite 0089(2), 0090(2) 69062 Aragonite 0061 40111 Arsenopyrite 0087(2) 66333 Augite 0038 8503 Barite 0006 37130 Beryl 0075(2) 37743 Biotite 0049(2), 0050 45400 Blende 0086(2) 15596 Bronzite 0112 50452 Bytownite 0103 14666 Calcite 0010, 0011, 0052, 0078, 0079 112501 Cassiterite 0119, 0120 38535 Celestite 0000, 0001, 0002 56075 Chalcedony 0108(2), 0109(2) 96431 Chalcopyrite 0106 19375 Chlorite 0013 75802 Clinochlore 0126 45301 Coal 0081, 0082 44664 Copper 0101 14556 Diopside 0069 58959 Dolomite 0091(2), 0092(2) 76810 Enstatite 0047 31072 Epidote 0023, 0024 47306 Fluorite 0003(2), 0012(2) 98638 Galena 0053, 0054 17931 Garnet 0115 27331 Glaucophane 0016, 0017, 0076, 0077 200830 Goethite 0114 10717 Graphite 0083, 0084 20047 Grossular 0030, 0031 46592 Gypsum 0005(2), 0007, 0063 159829 Halite 0008, 0056 66201 Halloysite 0121, 0122 102028 Hematite 0039(2), 0085(2), 0095, 0096 165228 Hornblende 0046 9175 Hypersthene 0111 62932 Ilmenite 0116 16256 Kaolinite 0113 20764 Kyanite 0029 12320 Labradorite 0088(2), 0104(2) 62762 Limonite 0128, 0129 64550 Magnetite 0055, 0072 7103 Microcline 0071 60699 Montmorillonite 0123, 0124, 0125 87986 Muscovite 0034 62481 Nepheline 0097(2) 51930 Olivine 0065 7965 Omphacite 0019, 0067 108032 Opal 0102 34404 Orthoclase 0057 49824 Phlogopite 0045, 0070 105119 Pyrite 0042, 0048 31598 Pyrolusite 0117, 0118 45534 Pyrrhotite 0051 21572 Quartz 0009(2), 0035 126760 Rutile 0093 4959 Sanidine 0099(2) 49260 Serpentine 0018, 0068 78937 Siderite 0080 11651 Silicified wood 0127(2) 92935 Sillimanite 0032, 0033 70546 Sodalite 0043, 0060 61852 Sphalerite 0105 27485 Staurolite 0027, 0028, 0066 30628 Sulfur 0036, 0037 34751 Talc 0022, 0040, 0041, 0058, 0059 138317 Titanite 0094 4121 Tourmaline 0044, 0062 68419 Tremolite 0098(2), 0100 70913 Zircon 0110(2) 5110 </code></pre>
A 2D hyperspectral library of mineral reflectance, from 900 to 2500nm - Masked high dynamic range data
<p>Each <strong>zip</strong> file contains the text description file: <strong>description.txt</strong>. It also contains the data of one or two measurement, <strong>A</strong> and possibly B. The files are named as follows (<strong>####</strong> is the sample ID, <strong>@</strong> the letter of the measurement):</p> <ul> <li><strong>####-@.ply</strong> and <strong>####-@.png</strong>: 3D reconstruction in Stanford PLY format, and associated texture file.</li> <li><strong>@-im-000.jpg</strong>, <strong>@-im-010.jpg</strong>, ..., <strong>@-im-360.jpg</strong>: JPEG images of the sample, the angle is in degrees. 0 degree correspond to the position used during scanning.</li> <li><strong>@.mhdr.h5</strong>: HDF5 file containing masked HDR raw scan data. Masked values are represented by nan.</li> </ul> <p>The zip files correspond to the sample IDs, according to the following table:</p> <pre><code>Mineral Sample IDs Datapoints ---------------------------------------------------------------- Actinolite 0020, 0021, 0064 56840 Albite 0107 22521 Almandine 0025, 0026, 0073, 0074 17425 Andalusite 0014 18862 Anhydrite 0004 30832 Apatite 0089(2), 0090(2) 69062 Aragonite 0061 40111 Arsenopyrite 0087(2) 66333 Augite 0038 8503 Barite 0006 37130 Beryl 0075(2) 37743 Biotite 0049(2), 0050 45400 Blende 0086(2) 15596 Bronzite 0112 50452 Bytownite 0103 14666 Calcite 0010, 0011, 0052, 0078, 0079 112501 Cassiterite 0119, 0120 38535 Celestite 0000, 0001, 0002 56075 Chalcedony 0108(2), 0109(2) 96431 Chalcopyrite 0106 19375 Chlorite 0013 75802 Clinochlore 0126 45301 Coal 0081, 0082 44664 Copper 0101 14556 Diopside 0069 58959 Dolomite 0091(2), 0092(2) 76810 Enstatite 0047 31072 Epidote 0023, 0024 47306 Fluorite 0003(2), 0012(2) 98638 Galena 0053, 0054 17931 Garnet 0115 27331 Glaucophane 0016, 0017, 0076, 0077 200830 Goethite 0114 10717 Graphite 0083, 0084 20047 Grossular 0030, 0031 46592 Gypsum 0005(2), 0007, 0063 159829 Halite 0008, 0056 66201 Halloysite 0121, 0122 102028 Hematite 0039(2), 0085(2), 0095, 0096 165228 Hornblende 0046 9175 Hypersthene 0111 62932 Ilmenite 0116 16256 Kaolinite 0113 20764 Kyanite 0029 12320 Labradorite 0088(2), 0104(2) 62762 Limonite 0128, 0129 64550 Magnetite 0055, 0072 7103 Microcline 0071 60699 Montmorillonite 0123, 0124, 0125 87986 Muscovite 0034 62481 Nepheline 0097(2) 51930 Olivine 0065 7965 Omphacite 0019, 0067 108032 Opal 0102 34404 Orthoclase 0057 49824 Phlogopite 0045, 0070 105119 Pyrite 0042, 0048 31598 Pyrolusite 0117, 0118 45534 Pyrrhotite 0051 21572 Quartz 0009(2), 0035 126760 Rutile 0093 4959 Sanidine 0099(2) 49260 Serpentine 0018, 0068 78937 Siderite 0080 11651 Silicified wood 0127(2) 92935 Sillimanite 0032, 0033 70546 Sodalite 0043, 0060 61852 Sphalerite 0105 27485 Staurolite 0027, 0028, 0066 30628 Sulfur 0036, 0037 34751 Talc 0022, 0040, 0041, 0058, 0059 138317 Titanite 0094 4121 Tourmaline 0044, 0062 68419 Tremolite 0098(2), 0100 70913 Zircon 0110(2) 5110 </code></pre> <p> </p>
2019-Xunyu Zhang-Mafic minerals in the South Pole-Aitken basin
<p>It is the dataset of extracted spectra and their location used in the paper "Mafic minerals in the South Pole-Aitken basin".</p>
FIGURES 8–15 in Bucculatrix crataega sp. nov. (Lepidoptera: Bucculatricidae), a leaf miner on Crataegus, representing the first formally named species of the family from mainland China
FIGURES 8–15. Host plant, leaf mine and cocoon of Bucculatrix crataega sp. nov. 8, a leaf of Crataegus pinnatifida, with a white cocoon attached; 9, leaf mine under reflected light, SDNU.JN160801; 10, leaf mine under transmitted light, same mine as fig. 9; 11, egg; 12, feeding windows; 13, moulting cocoon; 14, cocoon; 15, cocoon with a pupal exuvia protruded.
FIGURE 7 in Heliozela pitangavora Moreira & Fochezato sp. nov. (Lepidoptera: Heliozelidae): a leaf miner micromoth associated with Eugenia uniflora L. (Myrtaceae) in southern Brazil
FIGURE 7. Natural history Heliozela pitangavora sp. nov. (Lepidoptera: Heliozelidae) on Eugenia uniflora L. (Myrtaceae). A, host plant (mines on leaves are indicated by closed arrows); B, C, young and matures mines, respectively, on adaxial surface of leaves (larvae inside mines are pointed by open arrows); D, penultimate larval instar on dissected, mature mine, dorsal; E, last larval instar on dissected shield, dorsal; F, detached shield and corresponding orifice (indicated by closed arrow) left on leaf mine corner, where corresponding cuts were performed by penultimate instar, dorsal; G, pupa dissected from shield, near adult emergence, dorsal; H, pupal exuvium, left attached to the shield after adult emergence, lateral. Scale bars = 1 (B), 5 (C), 0.5 (D, G–H), 1 mm (E–F).
FIGURE 8 in Heliozela pitangavora Moreira & Fochezato sp. nov. (Lepidoptera: Heliozelidae): a leaf miner micromoth associated with Eugenia uniflora L. (Myrtaceae) in southern Brazil
FIGURE 8. Evolutionary analysis of Heliozela pitangavora sp. nov. (Lepidoptera: Heliozelidae) through maximum likelihood inference. The consensus tree was reconstructed based on 658 base pairs of the Cytochrome oxidase I (COI) gene. The numbers adjacent to the branches represent bootstrap support, with an asterisk denoting values below 50.The scale bar indicates the substitution rate per nucleotide site.
FIGURE 6 in Heliozela pitangavora Moreira & Fochezato sp. nov. (Lepidoptera: Heliozelidae): a leaf miner micromoth associated with Eugenia uniflora L. (Myrtaceae) in southern Brazil
FIGURE 6. Scanning electron micrographs of Heliozela pitangavora sp. nov. (Lepidoptera: Heliozelidae) pupa. A, B, head under lateral and ventral views, respectively; C, clypeal setae, ventral (detail of area indicated by square in B); D, mesothorax, dorsal; E, abdominal segment Ab, lateral; F, abdominal spiracle (detail of area indicated by square in E); G, distal portion of 5 abdomen, lateral; H, terminal hooks, lateral (detail of area indicated by square in G); I, distal portion of abdomen, ventral. Scale bars = 100 (A–B, D–E, I), 10 (C, F, H), 50 μm (G).
ScienceDex guides
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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.