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1,063 results for “sharpness”
Additional material for "Sharp Congruences Adequate with Temporal Logics Combining Weak and Strong Modalities"
<p>Complementary material including the proofs of all theorems presented at TACAS 2020, a detailed description of the RERS 2019 experiment, and the actual data used for the RERS 2018,RERS 2019, and TFTP experiments.</p>
FIGURE 32 in A revision of Oocyclus Sharp of Mexico and Central America (Coleoptera: Hydrophilidae)
FIGURE 32. Habitat of Oocyclus species. Costa Rica: Puntarenas Province. Photo by W. Shepard, 18 June 2003.
FIGURES 30 – 31 in A revision of Oocyclus Sharp of Mexico and Central America (Coleoptera: Hydrophilidae)
FIGURES 30 – 31. Habitat of Oocyclus species. Photos by A. E. Z. Short. – 30. Type locality & habitat of O. catarata n. sp., Costa Rica: Alajuela Province, 15.4 km S. Poasito, 16 January 2004. – 31. Collecting locality for O. catarata n. sp., O. funestus n. sp., & O. maculatus Sharp, Costa Rica: Alajuela Province, Catarata del Toro, 15 January 2004.
FIGURES 28 – 29 in A revision of Oocyclus Sharp of Mexico and Central America (Coleoptera: Hydrophilidae)
FIGURES 28 – 29. Habitat of Oocyclus species. Photos by A. E. Z. Short. – 28. Type locality & habitat of O. muscus n. sp., Costa Rica, Cartago Province, Tapantí National Park, 6 January 2004. – 29. Type locality & habitat of O. tapanti n. sp. and collecting locality for O. maculatus Sharp & O. ornatus n. sp., Costa Rica, Tapantí National Park, 8 January 2004.
Fig. 3 in A new species of Diartiger Sharp from Sichuan, China (Coleoptera: Staphylinidae: Pselaphinae)
Fig. 3. Collection environment (A), habitat (B), and a living adult in situ (C) of Diartiger wangzheni sp. nov.
Fig 2 in A new species of Diartiger Sharp from Sichuan, China (Coleoptera: Staphylinidae: Pselaphinae)
Fig 2. Diartiger wangzheni sp. nov. male. (A) Right antenna (B) Elytral apex and abdominal base, showing trichomes. (C) Right middle leg (D) Right hind leg (E) Prosternum and meso- and metaventrite. (F, G) Aedeagus, in lateral (F) and ventral (G) view. Scale bars: 0.2 mm.
Fig 1 in A new species of Diartiger Sharp from Sichuan, China (Coleoptera: Staphylinidae: Pselaphinae)
Fig 1. Diartiger wangzheni sp. nov. male. (A) Dorsal habitus (B) Head dorsum and pronotum. (C) Tergite 5 (VIII) and sternite 6 (VIII), showing black thickened setae at middle. Scale bars: 0.5 mm in A; 0.2 mm in B-C.
Fig. 1 in Sharp Differences In The Timing Of Male And Female Spring Arrival In The European Stonechat, Saxicola Rubicola, And The Whinchat, S. Rubetra (Passeriformes, Muscicapidae), In North-Eastern Ukraine
Fig. 1. Spring arrival schedules of male and female Common Stonechats (Saxicola rubicola) and male and female Whinchats (S. rubetra) at the study plot in the Murom River flood plain (Kharkiv Region, Ukraine). The dates were standardised by assigning 1 Day value for the arrival of first bird in a certain year (the data for years 1994–1995, 2002–2004 are presented).
Optimal vaccination at high reproductive numbers: sharp transitions and counterintuitive allocations
Optimization of vaccine allocations among different segments of a heterogeneous population is important for enhancing the effectiveness of vaccination campaigns in reducing the burden of epidemics. Intuitively, it would seem that allocations designed to minimize infections should prioritize those with the highest risk of being infected and infecting others. This prescription is well supported by vaccination theory, e.g. when the vaccination campaign aims to reach herd immunity. In this work, we show, however, that for vaccines providing partial protection (leaky vaccines) and for sufficiently high values of the basic reproduction number, intuition is overturned: the optimal allocation minimizing the number of infections prioritizes the vaccination of those who are least likely to be infected. The work combines numerical investigations, asymptotic analysis for a general model, and complete mathematical analysis in a two-group model. The results point to important considerations in managing vaccination campaigns for infections with high transmissibility.
Text-fig. 7. Exbeckettia mastixioides (E.REID et M.CHANDLER) comb. nov. Details of anatomy in transverse section on cut surfaces from bilocular fruit shown in Text-fig. 6i, V. 23013(3). a: Details of seed (S), locule (L), distinct endocarp planes of separation (arrows). b: Detail of endocarp adjacent to the locule, and surrounding mesocarp. Blue lines indicate thickness of sclerenchyma lining the locule. Note layer of horizontally oriented periclinal fibres a few cells thick, lining the locule (arrow). c: Enlargement showing parenchyma cells of the mesocarp decreasing in diameter toward the periphery. d: Enlargement showing fibres and sclereids of the endocarp. e: Sharp contact between endocarp and mesocarp. f, g: Detailed anatomy of endocarp including locule lining, and contact with mesocarp. Scale bars 2 mm in (a), (b), 1 mm in (c–g). in Mastixioid Fruits (Cornales) From The Early Eocene London Clay Flora: Morphology, Anatomy And Nomenclatural Revision
Text-fig. 7. Exbeckettia mastixioides (E.REID et M.CHANDLER) comb. nov. Details of anatomy in transverse section on cut surfaces from bilocular fruit shown in Text-fig. 6i, V. 23013(3). a: Details of seed (S), locule (L), distinct endocarp planes of separation (arrows). b: Detail of endocarp adjacent to the locule, and surrounding mesocarp. Blue lines indicate thickness of sclerenchyma lining the locule. Note layer of horizontally oriented periclinal fibres a few cells thick, lining the locule (arrow). c: Enlargement showing parenchyma cells of the mesocarp decreasing in diameter toward the periphery. d: Enlargement showing fibres and sclereids of the endocarp. e: Sharp contact between endocarp and mesocarp. f, g: Detailed anatomy of endocarp including locule lining, and contact with mesocarp. Scale bars 2 mm in (a), (b), 1 mm in (c–g).
Dataset: Sharps Technology, Inc. (STSS) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Sharps Technology, Inc. (STSSW) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Fig. 1 in Trogoderma anthrenoides (Sharp, 1902) (Coleoptera: Dermestidae), new species for Spain.
Fig. 1.- Habitus of Trogoderma Fig. 2.- Habitus of Trogoderma inclusum Fig. 3.- Habitus of Trogoderma versicolor anthrenoides (Sharp, 1902) LeConte, 1854 (Creutzer, 1799)
Sharpness metric results and Instron method script for 'Raw Material Sharpness and Lithic Patterns: An Analysis of Holocene Susitna River Basin, Central Alaska' MPhil dissertation
<p>Data for appendix B in 'Raw Material Sharpness and Lithic Patterns: An Analysis of Holocene Susitna River Basin, Central Alaska' MPhil dissertation. This data set Includes initial and dulled sharpness metric data from the Instron® experiment for each flake. It also includes the Instron® bluehill method program script.</p>
Figs. 1-5 in A new species of Hemirhopalum Sharp, 1902 from French Guiana (Coleoptera¡ Dermestidae¡ Megatominae).
Figs. 1-5.- Hemirhopalum baenai sp. nov. 1.- Habitus, dorsal aspect. 2.- Habitus, lateral aspect. 3.- Head and pronotum. 4.- Antennae of female. 5.- Fore leg, spines.
Figs 37-39 in Notes on Graptodytes SEIDLITZ, 1887, re-instatement of G. laeticulus (SHARP, 1882) as valid species and description of Tassilodytes nov.gen. from Algeria (Coleoptera, Dytiscidae, Hydroporinae, Siettitiina)
Figs 37-39: Tassilodytes parisii (GRIDELLI, 1939), holotype (37) lateral view, showing almost straight elytral margin near shoulder; (38) ventral view, showing vaulted prosternum before procoxae, prosternal column (between procoxae) and prosternal process; (39) ventral view, arrows pointing on anteromedial metaventral process and small visible part of right side of "mesosternal fork" serving to receive prosternal process (see SHARP 1882: 224).
Figs 42-49 in Notes on Graptodytes SEIDLITZ, 1887, re-instatement of G. laeticulus (SHARP, 1882) as valid species and description of Tassilodytes nov.gen. from Algeria (Coleoptera, Dytiscidae, Hydroporinae, Siettitiina)
Figs 42-49: Collecting sites: (42) Chaabat Errich; (43) Aïn Chef; (44) Mouilha Zizlag; (45) Aïn Damous; (46) Chaabat Settara; (47) Chaabat Sangot; (48) Mouilha Ben Haouech; (49) El K'haïla; all localities situated in Medjez Sfa region (Guelma province).
Figs 30-32 in Notes on Graptodytes SEIDLITZ, 1887, re-instatement of G. laeticulus (SHARP, 1882) as valid species and description of Tassilodytes nov.gen. from Algeria (Coleoptera, Dytiscidae, Hydroporinae, Siettitiina)
Figs 30-32: Tassilodytes parisii (GRIDELLI, 1939) (30) holotype, dorsal surface; (31) same, ventral surface; (32) holotype labels (scale bar 4.0 mm).
Figs 28-29 in Notes on Graptodytes SEIDLITZ, 1887, re-instatement of G. laeticulus (SHARP, 1882) as valid species and description of Tassilodytes nov.gen. from Algeria (Coleoptera, Dytiscidae, Hydroporinae, Siettitiina)
Figs 28-29: Graptodytes narentinus (ZIMMERMANN, 1915) (28) lectotype, habitus (scale bar 2.0 mm); (29) lectotype labels.
Figs 12-14 in Notes on Graptodytes SEIDLITZ, 1887, re-instatement of G. laeticulus (SHARP, 1882) as valid species and description of Tassilodytes nov.gen. from Algeria (Coleoptera, Dytiscidae, Hydroporinae, Siettitiina)
Figs 12-14: Graptodytes laeticulus (SHARP, 1882), details of ventral surface (12) arrows pointing to abruptly narrowed epipleuron and row of ridges; (13) row of ridges, enlarged; (14) deeply incised hind margin of metacoxal processes with broadly rounded lobes.
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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.