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.
7,169
datasets available to search
ShareScore release 0.9.0
Dataset results
7,169 results for “30”
ePSproc: DABCO, HOMO-1 ionization (orb 30, A2PP), 1 - 50eV
DABCO, HOMO-1 ionization (orb 30, A2PP), 1 - 50eV - photoionization calculations with ePolyScat (ePS) + ePSproc.<br><br>*Web version*: <a href="https://phockett.github.io/ePSdata/DABCO/DABCO_1-50.0eV_orb30_A2PP.html">https://phockett.github.io/ePSdata/DABCO/DABCO_1-50.0eV_orb30_A2PP.html</a><br><br>For more details of the calculations, see readme.txt, or: <ul><li><a href="https://phockett.github.io/ePSdata/about.html">About ePSdata</a></li><li><a href="http://epsproc.readthedocs.io/en/latest/about.html">About ePSproc</a></li><li><a href="http://www.chem.tamu.edu/rgroup/lucchese/ePolyScat.E3.manual/manual.html">About ePS</a></li></ul>
Figs 30–35 in Flourishing in subterranean ecosystems: Euro-Mediterranean Plusiocampinae and tachycampoids (Diplura, Campodeidae)
Figs 30–35. Plusiocampa (Plusiocampa) bonneti condei Sendra & Escolà, 2004, from Cova del Toll, Moià, Barcelona, Spain (Coll. AS). 30. Cupuliform organ. 31. Medial antennomere. 32. Frontal process. 33. Lateral distal view of medial antennomere, with gouge and coniform sensilla 34. Protruding frontal process. 35. Surface of metanotum.
Fig. 30 in Taxonomy and biostratigraphy of the elasmobranchs and bony fishes (Chondrichthyes and Osteichthyes) of the lower-to-middle Eocene (Ypresian to Bartonian) Claiborne Group in Alabama, USA, including an analysis of otoliths
Fig. 30. Abdounia beaugei (Arambourg, 1935), teeth. A–C. MSC 35754.1, anterolateral tooth, lower Tallahatta Formation. A. Labial view. B. Mesial view. C. Lingual view. D–F. MSC 37571.1, lateral tooth, Gosport Sand. D. Labial view. E. Mesial view. F. Lingual view. G–I. MSC 37571.2, anterior tooth, Gosport Sand. G. Labial view. H. Mesial view. I. Lingual view. J–L. MSC 35754.9, lateral tooth, lower Tallahatta Formation. J. Labial view. K. Mesial view. L. Lingual view. Scale bars for A–L = 2 mm.
ePSproc: CH3I wavefn test run, orb 30 ioinzation (pi anti-bonding), 1 - 60 eV
CH3I wavefn test run, orb 30 ioinzation (pi anti-bonding), 1 - 60 eV - photoionization calculations with ePolyScat (ePS) + ePSproc.<br><br>*Web version*: <a href="https://phockett.github.io/ePSdata/CH3I_1-60eV/CH3I_1-60eV_orb30_E.html">https://phockett.github.io/ePSdata/CH3I_1-60eV/CH3I_1-60eV_orb30_E.html</a><br><br>For more details of the calculations, see readme.txt, or: <ul><li><a href="https://phockett.github.io/ePSdata/about.html">About ePSdata</a></li><li><a href="http://epsproc.readthedocs.io/en/latest/about.html">About ePSproc</a></li><li><a href="http://www.chem.tamu.edu/rgroup/lucchese/ePolyScat.E3.manual/manual.html">About ePS</a></li></ul>
Figures 27–31. 27–30 in Descriptions of one new genus and seven new species of Rhinotragini (Coleoptera: Cerambycidae: Cerambycinae)
Figures 27–31. 27–30) Giesberticus longiventris new genus and species, holotype male: 27) Dorsal habitus. 28) Ventral habitus. 29) Lateral habitus. 30) Head, frontal view. 31) Odontocera globicollis, holotype female.
Figures 25–30 in Provisional revision of the genus Odontocera Audinet-Serville, 1834 (Coleoptera: Cerambycidae). I: exclusions, new rank, synonymies and the description of two new genera
Figures 25–30. Species of Odontocroton (Group B (ii)). 25) Odontocroton quinquecallosus (Zajciw, 1963), holotype, male. 26) Odontocroton septemtuberculatus (Zajciw, 1963), holotype male. 27–30. Odontocroton quinquecallosus. 27) Male, dorsal aspect. 28) Male, ventral aspect. 29) Female, dorsal aspect. 30) Female, ventral aspect.
FIG. 30 in Revision of Hesione Savigny in Lamarck, 1818 (Annelida, Errantia, Hesionidae)
FIG. 30. — Hesione pacifica McIntosh, 1885, holotype, BMNH 85.12.1.136: A, anterior region, dorsal view; B, prostomium, dorsal view (arrows point to antennae); C, chaetiger 15, right parapodium, anterior view (inset: neurochaetal remains); D, posterior region, dorsal view; E, same, close-up of pygidium. Scale bars: A, 1 mm; B, 0.2 mm; C, E, 0.3 mm; D, 0.9 mm.
Figs 30-36 in Five new species oI Chinecallicerus Irom China (Coleoptera, Staphylinidae, Aleocharinae, Geostibini)
Figs 30-36: Chinecallicerus discrepans: habitus (30); forebody (31); antenna (32); labium (33); male abdomen (34); median lobe of aedeagus in lateral and in ventral view (35-36). Scale bars: 30- 32, 34: 1.0 mm; 35-36: 0.2 mm; 33: 0.1 mm.
Figs 30-32 in Eight new species of Macvicaria Gibson and Bray, 1982 (Digenea: Opecoelidae) from temperate marine fishes of Australia
Figs 30-32. Macvicaria heronensis Bray & Cribb, 1989 ex Trachinotus coppingeri. 30. Whole-mount ventral view. 31. Terminal genitalia. 32. Dorsal distribution of vitelline follicles. Scale bars: 30, 32, 250 µm; 31, 100 µm.
Figure 30 in Review of the millipede genus Eutrichodesmus Silvestri, 1910 (Diplopoda, Polydesmida, Haplodesmidae), with descriptions of new species
Figure 30. Eutrichodesmus multilobatus sp. n., ♁ paratype; A, B, right gonopod, mesal and lateral views, respectively. – Scale bar: 0.3 mm.
Figure 30 in Review of the millipede family Haplodesmidae Cook, 1895, with descriptions of some new or poorly-known species (Diplopoda, Polydesmida)
Figure 30. Doratodesmus grandifoliatus (Zhang in Zhang & Wang, 1993), ♂ from Ma Fa Tiao Dong Cave; A, leg 9, caudal view; B & C, right gonopod, lateral and mesal views, respectively (sl = solenomere; lo = lateral lobe). − Scale bar: A, 0.2 mm, B, C, 0.1 mm.
Figure 30 in The spider family Micropholcommatidae (Arachnida: Araneae: Araneoidea): a relimitation and revision at the generic level
Figure 30. Austropholcomma florentine sp. n. from the Florentine Valley, Tasmania. A, C holotype male (TMAG): A habitus, dorsal view C abdomen, ventral view. B, D allotype female (TMAG): B habitus, dorsal view D abdomen, ventral view.
Figure 30 in DELTA for Beginners. An introduction into the taxonomy software package DELTA
Figure 30. Directive file toint for generating the files needed for Intkey. Th e numbers to the left of the directive file indicate different classes of directives (see Table 3). Th e grey ovals show commands where input of the user might be required. (continued on next page)
Fig. 30 in A revision of Cissidium Motschulsky (Coleoptera: Ptiliidae) with seventy seven new species
Fig. 30. Cissidium lamington sp. nov. A. Habitus. B. Pronotum, × 585. C. Mesoventrite showing median process of collar, mid-keel and keel, × 1140.
Fig. 30 in Revision of the Afrotropical species of Pristomerus (Ichneumonidae: Cremastinae), with descriptions of 31 new species
Fig. 30. Pristomerus rivier Rousse & Villemant, 2012. Holotype, ♀. A. Habitus, lateral view. B. Head, mesosoma, dorsal view. C. Head, anterior view. D. Propodeum, dorsal view. E. Mesosoma, lateral view. F. Hind tibia, lateral view.
Figs 30–32 in New records of Dasyhelea Kieffer, 1911 from Sweden, with descriptions of two new species (Diptera: Ceratopogonidae)
Figs 30–32. Dasyhelea gothlandica sp. nov., paratype, ♀. 30–31. Subgenital plate. 32. Seminal capsule. Scale bars = 50 μm.
Figs 30–33 in Redefinition and partial revision of the genus Stenaelurillus Simon, 1886 (Arachnida, Araneae, Salticidae)
Figs 30–33. Expanded female palp of Stenaelurillus nigricaudus Simon, 1886 from Burkina Faso (Sissamba). 30. Median view. 31. Ventral view. 32. Retrolateral-dorsal view. 33. Retrolateral view. Abbreviations: see Material and methods. Scale bars: 0.1 mm.
Fig. 30 in The cephalopods of the Boda Limestone, Late Ordovician, of Dalarna, Sweden
Fig. 30. Reconstruction of median section of Tyrioceras cf. kjaerulfi Strand, 1934, PMU 26897, Boda Limestone, Kallholn. Black = outer shell and septa; grey = cameral deposits.
Figs 30–37 in Studies on neotropical Phasmatodea XVIII: Four new species of Lobolibethra Hennemann & Conle, 2007 from Peru and Ecuador (Phasmatodea: "Anareolatae": Diapheromeridae)
Figs 30–37. Lobolibethra pozuzoae sp. nov. 30. ♀, PT: apex of abdomen in dorsal view (FH, 0631-41). 31. ♀, PT: apex of abdomen in lateral view (FH, 0631-41). 32. ♀, PT: apex of abdomen in dorsal view (FH, 0631-44). 33. ♀, PT: apex of abdomen in lateral view (FH, 0631-44). 34. ♀, PT: apex of abdomen in ventral view (FH, 0631-37). 35. ♂, PT: apex of abdomen in dorsal view (FH, 0631-9). 36. ♂, PT: apex of abdomen in lateral view (FH, 0631-9). 37. ♂, PT: apex of abdomen in ventral view (FH, 0569-56).
Fig. 30 in Systematic revision of the Plectopylinae (Gastropoda, Pulmonata, Plectopylidae)
Fig. 30. Shells of species of Chersaecia Gude, 1899. A. C. shiroiensis shiroiensis (Godwin-Austen, 1875), syntype (NHMUK 1903.7.1.747). B. C. shiroiensis subnagaensis subsp. nov., holotype (NHMUK 1903.7.1.753.1). C. C. woodthorpei (Gude, 1899) comb. nov., syntype (NHMUK 1903.7.1.2100). Scale bar = 5 mm. All photos: H. Taylor.
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.