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6,025 results for “Science of science”
FIGURES 80–84 in Nepticulidae (Lepidoptera) of East Asia (1). Re-examination of the male genitalia of types deposited at the Russian Academy of Sciences
FIGURES 80–84. Male genitalia of Stigmella uigurica Puplesis (a junior syn. of Stigmella continuella (Stainton)), holotype, slide no. AG 384 (ZIN). 80, capsule (aedeagus and valvae removed); 81, valva; 82–84, various views of aedeagus and cornuti. Scale bar 100 µm.
FIGURES 11A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 11A–H. Ontholestes tenuicornis (Kraatz, 1859), male (A–E, G) and female (F, H). A—sternite VIII; B—tergite X; C—sternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—tergite X; G-head; H—genital segment with second gonocoxite. Scale bar 1mm.
FIGURES 8A–C. Ontholestes proximus Kirshenblat, 1936 in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 8A–C. Ontholestes proximus Kirshenblat, 1936, female (A–C, holotype). A—tergite X; B—genital segment with second gonocoxite; C—head. Scale bar 1mm.
FIGURES 10A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 10A–H. Ontholestes tessellatus (Geoffroy, 1785), male (A–E, G) and female (F, H). A—sternite VIII; B—tergite X; C—sternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—genital segment with second gonocoxite; G—head; H—tergite X. Scale bar 1mm.
FIGURES 5A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 5A–H. Ontholestes murinus (Linné, 1758), male (A–E, H) and female (F, G). A—sternite VIII; B—tergite X; Csternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—genital segment with second gonocoxite; G—tergite X; H—head. Scale bar 1mm.
FIGURES 3A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 3A–H. Ontholestes callistus (Hochhuth), 1849, male (A–E, G) and female (F, H). A—sternite VIII; B—tergite X; C—sternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—genital segment with second gonocoxite; G—head; H—sternite X. Scale bar 1mm.
FIGURES 4A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 4A–H. Ontholestes aurosparsus (Fauvel, 1895), male (A–E, G) and female (F, H). A—sternite VIII; B—tergite X; C—sternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—genital segment with second gonocoxite; G—head; H—tergite X. Scale bar 1mm.
FIGURES 6A–H in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 6A–H. Ontholestes oculatus (Sharp, 1974), male (A–E, G) and female (F, H). A—sternite VIII; B—tergite X; Csternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—tergite X; G—head, H—genital segment with second gonocoxite. Scale bar 1mm.
FIGURES 2A–F in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 2A–F. Ontholestes xinqiaoensis Yang & Zhou, sp. nov., male (A–F, holotype). A—sternite VIII; B—tergite X; Csternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—head. Scale bar 1mm.
FIGURES 9A–I. Ontholestes simulator Kirshenblat, 1936 in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 9A–I. Ontholestes simulator Kirshenblat, 1936, male (A–G, lectotype) and female (H–I, paralectotype). A—sternite VIII; B—head; C—tergite X; D—aedeagus, ventral view; E-aedeagus, lateral view; F—sternite IX; G- sternite VII; H—tergite X; I—genital segment with second gonocoxite. Scale bar 1mm.
FIGURES 1A–F in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 1A–F. Ontholestes napoensis Yang & Zhou, sp. nov., male (A–F, holotype). A—sternite VIII; B—tergite X; Csternite IX; D—aedeagus, ventral view; E—aedeagus, lateral view; F—head. Scale bar 1mm.
FIGURES 7A–H. Ontholestes orientalis Bernhauer, 1906 in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURES 7A–H. Ontholestes orientalis Bernhauer, 1906, male (A–B, E–H, Syntype) and female (C–D). A—sternite VIII; B—tergite X; C—tergite X; D—genital segment with second gonocoxite; E—sternite IX; F—head; G—aedeagus, ventral view; H—aedeagus, lateral view. Scale bar 1mm.
FIGURE 12 in Review of Chinese species of the genus Ontholestes Ganglbauer, 1895 (Coleoptera: Staphylinidae: Staphylininae) with description of two species new to science
FIGURE 12. Distribution of genus Ontholestes Ganglbauer, 1895, species from China. ●—Ontholestes napoensis Yang & Zhou, sp. nov. ․—Ontholestes xinqiaoensis Yang & Zhou, sp. nov. —Ontholestes callistus (Hochhuth); —Ontholestes aurosparsus (Fauvel); ♦—Ontholestes murinus (Linné);Ο—Ontholestes oculatus (Sharp); ♢—Ontholestes orientalis Bernhauer; —Ontholestes proximus Kirshenblat; —Ontholestes simulator Kirshenblat; □—Ontholestes tessellatus (Geoffroy); —Ontholestes tenuicornis (Kraatz); ˔—Ontholestes inauratus (Mannerheim).
FIGURE 1 in Catalogue of the Krantz Brachiopod Collection at the Science Museum of the University of Coimbra (Portugal)
FIGURE 1. Phylogeny of the Brachiopoda based on Selden (2007) and Harper et al. (2010). Orders represented by the Krantz Brachiopod Collection are marked by black bars. [Ca = Carboniferous, Cb = Cambrian, Cenoz. = Cenozoic, Cl = Class, Cr = Cretaceous, Cra = Craniata, De = Devonian, Ju = Jurassic, Ku = Kutorginata, Li = Lingulata, Ng = Neogene, Ob = Obolellata, Pe = Permian, Pg = Palaeogene, Pr = Proterozoic, Qu = Quarternary, Rh = Rhynchonellata, Si = Silurian, St = Strophomenata, Subph = Subphylum, Tr = Triassic]
Workshop recording: Towards Implementation of the UNESCO Recommendation on Open Science – How to integrate citizen science into (open) science policy
<p>Recording of the workshop: Towards Implementation of the UNESCO Recommendation on Open Science – How to integrate citizen science into (open) science policy. If you have any questions or comments, please contact the workshop organisers Uta Wehn (<a href="mailto:u.wehn@un-ihe.org">u.wehn@un-ihe.org</a>) and Libby Hepburn (<a href="mailto:libby@atlasoflife.org.au">libby@atlasoflife.org.au</a>).</p>
Web of Science dataset for a paper on the Mediterranean biodiversity hotspot
<p>This folder contains the raw Web of Science data to execute the code available at this link: <a href="https://github.com/JanPerret/Biodivmex_git">https://github.com/JanPerret/Biodivmex_git</a></p>
Soil science JSON files
<p>JSON files that will be harvested in the process in ORKG.</p>
Systemic racial disparities in funding rates at the National Science Foundation
<p>Concerns about systemic racism at academic and research institutions have increased over the past decade. Here, we investigate data from the National Science Foundation (NSF), a major funder of research in the United States, and find evidence for pervasive racial disparities. In particular, white principal investigators (PIs) are consistently funded at higher rates than most non-white PIs. Funding rates for white PIs have also been increasing relative to annual overall rates with time. Moreover, disparities occur across all disciplinary directorates within the NSF and are greater for research proposals. The distributions of average external review scores also exhibit systematic offsets based on PI race. Similar patterns have been described in other research funding bodies, suggesting that racial disparities are widespread. The prevalence and persistence of these racial disparities in funding have cascading impacts that perpetuate a cumulative advantage to white PIs across all of science, technology, engineering and mathematics.</p>
Teaching the process of science with primary literature: Using the CREATE pedagogy in ecological courses
<p>There have been numerous calls for improved pedagogical practices in biological education, and there is a clear need for such improvements in ecology and related curricula. Most ecology-related texts lack pedagogy and are designed to be content-rich. National initiatives, such as Vision & Change, provide guidance on undergraduate biology education, including increasing use of evidence-based active learning, and taking a more conceptual and science practice skills approach. Biology education research is rich with evidence-based teaching practices, which reveal that active learning approaches implemented in thoughtful ways lead to strong learning gains relative to lecture-based course delivery. CREATE (Consider, Read, Elucidate the hypothesis, Analyze and interpret data, Think of the next Experiment) integrates evidence-based active pedagogical practices into one approach to STEM education that focuses heavily on the process of science and science practice skills rather than content delivery by replacing the textbook with selected journal articles. The approach focuses on deep reading and analysis of primary literature; immersing students in the literature is an advantage of the pedagogy. CREATE was developed and tested in other biological disciplines (genetics, molecular biology) that have long been at the forefront of pedagogical best practices in biology. We transformed two upper-level undergraduate ecological courses (Conservation Biology & Biodiversity and Ecology) into CREATE courses. We provide examples of assignments, student work, and assessments of the approach, illustrating the various ways CREATE can be successfully implemented. The approach can be adopted in part, to ease into it and test it out, or in whole. We recommend that ecology teachers consider making their courses more active if they have not already done so; adopting pedagogical practices embedded within CREATE can be a way to achieve active learning. The CREATE approach and other evidence-based pedagogical best practices lead to strong learning gains and more inclusive learning environments.</p>
Video related to the study "Spatial variability of Saharan dust deposition revealed through a citizen science campaign"
<p>This video is related to the manuscript "Spatial variability of Saharan dust deposition revealed through a citizen science campaign", by Dumont et al., submitted in December 2022 to the journal "Earth System Science Data".</p> <p>It illustrates the timeline of dust deposition, simulated by the atmospheric transport model MOCAGE.</p> <p> </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.