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218 results for “Bubble”
A flashing flow model for the rapid depressurization of CO2 in a pipe accounting for bubble nucleation and growth – dataset
<p>This dataset contains data from the depressurization of pure CO2 in a tube from a cold, dense-liquid state. The data is described in the accompanying paper (DOI: <a href="https://doi.org/10.1016/j.ijmultiphaseflow.2023.104666">10.1016/j.ijmultiphaseflow.2023.104666</a>).</p><p>Test number; fluid; pressure (MPa); temperature (deg C):<br>25; CO2; 12.3; 4.6</p>
Figure 2. A in Release the confetti! A new genus and species of Indo-West Pacific bubble snails (Cephalaspidea: Haminoeidae)
Figure 2. A, Live animals of Confettiella malaquiasi gen. n. et sp. n., the Philippines, Panglao (Courtesy of MNHN, Paris), presumably the larger, shell-less paratype (animal length 3 mm, MNHN-IM-2019- 11,997). B, Adapertural (left image) and apertural (right image) views of shell of wholly sequenced paratype (H = 2.5 mm, MNHN-IM-2019-11,998). C, Adapertural (left image) and apertural (right image) views of shell of holotype (H = 1.5 mm, MNHN Paris MNHN-IM-2019-11,996). D–F, Paratype, animal length 3 mm, MNHN-IM-2019-11,997. D, Complete male reproductive system. E, Detail of interior of dorsally opened atrium with extended penial structure (right image). F, Complete animal with shell and mantle removed, showing female reproductive system. Abbreviations: agl, albumen gland; am, ampulla; amg, anterior mucus gland; an, anus; at, atrium; dprl, distal prostate lobe; esd, external seminal duct; ga, genital aperture; gd, gametolytic duct; ggl, gametolytic gland; gz, gizzard; ho, Hancock's organ; isd, internal seminal duct; la, labium; mc, mantle cavity; md, median duct; mrp, male reproductive system; ms, muscular sheath; par, parapodial lobe; pl, pallial lobe; pmgl1, posterior mucus gland lobe 1; pmgl2, posterior mucus gland lobe 2; pprl, proximal prostate lobe; ps, penial structure; rm, retractor muscle; smg, seminal groove; v, vestibule. Scale bars: D, E = 0.25 mm; F = 0.5 mm.
Figure 1 in Release the confetti! A new genus and species of Indo-West Pacific bubble snails (Cephalaspidea: Haminoeidae)
Figure 1. Live Lamprohaminoea ovalis (Pease, 1868) from Albany, Western Australia, courtesy of K. Freemantle (CC.BY.NC 4.0) via www.inaturalist.org.
Figure 3. A in Release the confetti! A new genus and species of Indo-West Pacific bubble snails (Cephalaspidea: Haminoeidae)
Figure 3. A, Anterior digestive system of Confettiella malaquiasi gen. n. et sp. n., the Philippines, Panglao (paratype, animal length = 3 mm, MNHN-IM-2019-11,997). B, Left lateral view of whole gizzard plate. C, Scanning electron microscopy (SEM) image of whole radula. D, SEM detail of radula with rachidian. E, SEM detail of jaw, showing rods with denticulation. F, SEM detail of diatom lodged in gizzard plate. Abbreviations: bb, buccal bulb; cr, crop; es, oesophagus; gz, gizzard; m, mouth; ms, muscular sheath; sl, salivary gland; st, soft tissue. Scale bars: A = 0.5 mm; B, C = 20 µm; D = 2 µm; E, F = 1 µm.
FIGURE 6 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 6 Chlamydospores morphology of wet bubble disease pathogen isolates on diseased basidiomes observed by light microscopy. A–B: Big chlamydospore group. A: Chlamydospore of WH1; B: Chlamydospore of HN0015–8; C–D: Small chlamydospore group. C: Chlamydospore of H1–12; D: Chlamydospore of H3–4. Bar=20 µm.
FIGURE 8 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 8 Chlamydospores morphology of wet bubble disease pathogen isolates on PDA media observed by light microscopy. A–B: Big chlamydosporse group. A: Chlamydospores of WH1; B: Chlamydospores of HN0015–8; C–D: Small chlamydospores group. C: Chlamydospores of H1–12; D: Chlamydospores of H3–4.
FIGURE 10 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 10 The pathogenicity level of WBD pathogen isolates. (A) A healthy basidiome of A. bisporus without inoculation of WBD pathogen isolates, fruiting bodies without brown spots; (B) Highly pathogenicity WBD pathogen isolates, most primordia of A. bisporus differentiated into malformed fruiting bodies; (C) Weak pathogenicity WBD pathogen isolates, most of the primordia of A. bisporus formed normal fruiting bodies, while a part of the fruiting bodies were infected, the pathogen with brown spots and few primordia formed irregular fruiting bodies.
FIGURE 4 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 4 Maximum likelihood tree based on analysis of the ITS, nrLSU and RPB2 sequence data with Trichoderma aureoviride as the outgroup.
FIGURE 5 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 5 Conidiophore and conidia morphology of wet bubble disease pathogen isolates cultured on PDA. A–B: Big chlamydospore group. A: Chlamydospore of WH1, Bar=20 µm; B: Chlamydospore of HN0015–8, Bar=10µm.
FIGURE 9 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 9 Chlamydospores morphology of wet bubble disease pathogen isolates on PDA medium observed by SEM. A–B: Big chlamydospores group. A: Chlamydospore of WH1; B: Chlamydospores of HN0015–8; C–D: Small chlamydospores group. C: Chlamydospores of H1–12; D: Chlamydospores of H3–4.
FIGURE 3 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 3 Maximum likelihood tree based on analysis of the RPB2 sequence data with Trichoderma aureoviride as the outgroup.
FIGURE 7 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 7 Colony morphology of H. perniciosus isolates on PDA media. A: Hypomyces perniciosus WH1 strain colony morphology, colony type (ⅰ); B: Hypomyces perniciosus HN0015–8 colony morphology, colony type (ii); C: Hypomyces perniciosus H1–12 colony morphology, colony type (iii); D: Hypomyces perniciosus H3–4 colony morphology, colony type (iv).
FIGURE 1 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 1 Maximum likelihood tree based on analysis of the ITS sequence data with Trichoderma aureoviride as the outgroup.
Highly porous scaffolds for Ru-based microsupercapacitor electrodes using hydrogen bubble templated electrodeposition
<p>Data that supports the plots of Energy Storage Materials 47 (2022) 134–140</p>
PIC bubble
<p>2D image of magnetic field along the field axis produced by</p> <p>PIC simulations at 440 ns.</p>
Simulation Study of the Tonga Event: Development of Equatorial Plasma Bubbles
<p>Data used for the figures in the paper</p> <p>Simulation Study of the Tonga Event:<br> Development of Equatorial Plasma Bubbles</p>
Bubble Bass
Big heckin' chonker Source: Objaverse 1.0 / Sketchfab
Wall collision of deformable bubbles in the creeping flow regime (Supporting Data)
<p>The dataset contains sample numerical results of a bubble colliding with a solid wall at small Reynolds number, pertaining to the manuscript under the same title, "Wall collision of deformable bubbles in the creeping flow regime", published in the European Journal of Mechanics - B/Fluids.</p>
Prediction of equatorial plasma bubble formation using ionosonde observations from India
<p>The given dataset has been used for the analysis in the aricle "Prediction of equatorial plasma bubble formation using ionosonde observations from India". It contains day-to-day observations/predictions of events from Gadanki, Trivandrum, and Sriharikota. It aslo contains ionosonde data (Time vs h'F) from Gadanki on 13-03-2015, 14-03-2015, 18-03-2015, 19-03-2015, 20-03-2015 and 21-03-2015 used in the study. All data are given in the .txt format.</p>
Figure 2. Bubble plot showing diamondback terrapin clutch sizes recorded 1998–2012 in Long-term increases in clutch size in common snapping turtles (Chelydra serpentina) and diamondback terrapins (Malaclemys terrapin)
Figure 2. Bubble plot showing diamondback terrapin clutch sizes recorded 1998–2012. Bubble size indicates the number of clutches of the same size.
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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.