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207 results for “tanks”
Study of the failure mechanism of a HDPE liner in a Type IV high-pressure storage tank [Dataset related to publication]
<p>Data type: SEM micrographs; ATR-FTIR spectra; XRD patterns, DSC profiles and analyses. </p> <p>Data format: *.tif; *.dat; *.asc; *.opj.</p> <p>Origin of the data: laboratory equipment from University of Udine (SEM, ATR-FTIR, XRD, DSC).</p> <p>Software needed to plot the data: folders need to be unzipped, Origin.</p>
Operating diagram of hatching module, this module consists of two clearly separated sections, each consisting of two long tanks (2 × 0.2 × 0.2 m) designed to accommodate hatching boxes, a filtration tank and an independent water circulation pump with a cooling unit and UV sterilizer. This allows simultaneous monitoring of 16 batches of eggs. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of hatching module, this module consists of two clearly separated sections, each consisting of two long tanks (2 × 0.2 × 0.2 m) designed to accommodate hatching boxes, a filtration tank and an independent water circulation pump with a cooling unit and UV sterilizer. This allows simultaneous monitoring of 16 batches of eggs.
Operating diagram of larvae hatching module, this installation was used to determine the optimum larvae load during the rearing process and provided additional space for rearing several thousand larvae. It consists of nine 20-litre tanks with a glass panel along the front. They are fitted with an inlet supplying filtrated water at a rate of 100 l/h and an individual air inlet. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of larvae hatching module, this installation was used to determine the optimum larvae load during the rearing process and provided additional space for rearing several thousand larvae. It consists of nine 20-litre tanks with a glass panel along the front. They are fitted with an inlet supplying filtrated water at a rate of 100 l/h and an individual air inlet.
Bottom of DR1 tank, the sides of the module are fitted with glass panels which allow natural light from a window to enter the tank, and the observer to view the behaviour of the broodstock. This device ensures easy viewing and checking of the broodstock, facilitates management of feeding and allows effective monitoring of reproduction. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Bottom of DR1 tank, the sides of the module are fitted with glass panels which allow natural light from a window to enter the tank, and the observer to view the behaviour of the broodstock. This device ensures easy viewing and checking of the broodstock, facilitates management of feeding and allows effective monitoring of reproduction.
UK-based think tanks
<p>A database of UK-based think-tanks including:</p> <ul> <li>Name </li> <li>Year established </li> <li>Year disbanded or merged </li> <li>Main area </li> <li>A specific education emphasis </li> <li>Description </li> <li>Explicit political stand </li> <li>Focused stand </li> <li>Source for description </li> <li>Date accessed </li> <li>Notes </li> <li>Education emphasis boolean </li> <li>Affiliation</li> </ul> <p>The data on think tanks drew on the Wikipedia page ‘List of think tanks in the United Kingdom<strong>’ </strong>in 2014 (Wikipedia 2014), crosschecked with other online think tank lists (Harvard Kennedy School Library & Knowledge Services 2013, Telegraph 2008, Guardian 2013), and updated in 2020 (Wikipedia 2020). Websites were accessed to gain additional information about activity, area of interest, and political affiliation. If information on the exact date of foundation was unavailable, the date of its first publication was used, or in a very few cases as a final resort unconfirmed data such as the Wikipedia entry. In some cases we resorted to internet archive sites such as web.archive.org. As a result, eighteen think tanks were excluded, because they were clearly only research institutes with no extensive outreach, they did not function in the UK, or they did not provide enough information about their work. The final sample consisted of 163 think tanks.</p>
Associations between Dictyocaulus viviparus bulk tank milk seropositivity and meteorological variables
<p>This dataset belongs to the scientific article with the same title "Associations between <em>Dictyocaulus viviparus</em> bulk tank milk seropositivity and meteorological variables" to be published in International Journal for Parasitology.</p>
Рис. 1. Схема мониторинговых станций на озере Кенон: 1–1.6 — ТЭЦ; 2–2.1 — КСК; 3 — Нефтебаза; 4 — Центр озера; 5 — КаΑаΛинка Fig. 1. Diagram of monitoring stations on Kenon lake: 1–1.6 — TPP; 2–2.1 — KSK; 3 — Tank farm; 4 — Lake Center; 5 — Kadalinka in Toxic pollution assessment of Chita TPP-1 cooling reservoir by applying the method of head capsule morphological deformations in chironomid larvae
Рис. 1. Схема мониторинговых станций на озере Кенон: 1–1.6 — ТЭЦ; 2–2.1 — КСК; 3 — Нефтебаза; 4 — Центр озера; 5 — КаΑаΛинка Fig. 1. Diagram of monitoring stations on Kenon lake: 1–1.6 — TPP; 2–2.1 — KSK; 3 — Tank farm; 4 — Lake Center; 5 — Kadalinka
Fig. 6 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 6. Most important ecomorphological attributes for Brycon orbignyanus in the morphological differentiation among treatments, according to the ANOVA and the DCA, concomitantly. Treatments with a different letter above their ranges differed significantly.
Fig. 3 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 3. Condition factors (CFs) for Prochilodus lineatus and Brycon orbignyanus. The ANOVA was significant for both species (p <0.0001), demonstrating significant differences among the treatments. The results of the Tukey tests specifying which CFs were different from each other is demonstrated by the letters A, B, and C. Different letters indicate significant differences among the treatments.
Fig. 5 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 5. Most important ecomorphological attributes for Prochilodus lineatus in the morphological differentiation among treatments, according to the ANOVA and the DCA, concomitantly. Treatments with a different letter above their ranges differed significantly.
Fig. 7 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 7. The log of the distance from the centroid plus 1 [log (DC+1)] for Prochilodus lineatus and Brycon orbignyanus. The ANOVA was significant for both species (p <0.0001), demonstrating significant differences among the treatments. The results of the Tukey tests, specifying which DCs were different from each other, are demonstrated by the letters A, B, and C. Different letters indicate significant differences among the treatments.
Fig. 4 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 4. Projection of the four treatments [C = control; L = logs; M = macrophytes; and B = both (logs+macrophytes)] in the first two axes of the Principal Component Analysis for Prochilodus lineatus and for Brycon orbignyanus.
Deotek (Thana Nagbhid, District Chandrapur, Maharashtra). Rock-cut tank.
<p> Deotek (Thana Nagbhid, District Chandrapur, Maharashtra). Rock-cut tank south east of the temple, with later circular well-casing inserted using cut blocks of masonry.</p>
Fig. 2 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 2. (A) A downward vertical view (in situ) of Aechmea zebrina (foreground center left, and at lower elevation in upper right and center right) and a cluster of Aechmea tessmannii (center, with one in bloom) bromeliads in the tree canopy from ~34 m. (B) A community of A. zebrina bromeliads at ~38 m (in situ). (C) An A. zebrina bromeliad (ex situ) inside screen tent being measured and prepared for dismantling, collected from ~44 m in the canopy. Notice the more upright leaves and reddish color because of increased sun exposure due to high canopy location.
Fig. 5 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 5. Box plots of recorded habitat variables for Aechmea zebrina bromeliads collected from all trees, bromeliads with ≥1 metamorphosed anuran, and bromeliads absent of anurans. Asterisks represent the mean, open circles are outliers, horizontal line inside box is the median, top and bottom lines of the rectangle are the 3rd and 1st quartiles (Q3 and Q1), respectively, and the top and bottom whiskers are maximum and minimum values excluding outliers, respectfully.
Fig. 1 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 1. (A) Map of South America with Ecuador (shaded light blue) and Yasuní National Park (solid dark green) highlighted. The Amazon ecoregion is outlined with light green line. (B) Northeastern section of Yasuní National Park (light gray line) and surrounding region where trees were sampled for Aechmea zebrina bromeliads within the vicinity of the Tiputini Biodiversity Station – Universidad San Francisco de Quito (TBS) and the Yasuní Research Station – Pontificia Universidad Católica del Ecuador (YRS). (C) Detail of TBS where trees were sampled for A. zebrina bromeliads. Note: Map is modified from Figure 2 in McCracken and Forstner (2014) and used under the Creative Commons Attribution license.
Fig. 4 in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 4. The Banded cat-eyed snake, Leptodeira annulata, collected in an Aechmea zebrina bromeliad at 43.5 m above the forest floor.
Fig. 3. A in Herpetofaunal community of a high canopy tank bromeliad (Aechmea zebrina) in the Yasuní Biosphere Reserve of Amazonian Ecuador, with comments on the use of "arboreal" in the herpetological literature
Fig. 3. A collection of anurans collected from Aechmea zebrina bromeliads. (A) Pristimantis aureolineatus hiding in leaf axil, and (B) on a leaf of A. zebrina. (C) Pristimantis waoranii emerging from leaf axil, and (D) on a leaf of A. zebrina. (E) Ranitomeya ventrimaculata and (F) Scinax ruber collected from A. zebrina bromeliads.
Dataset from the Towing Tank Test of the B.I.O. Hespérides ship model, conducted at the CEHINAV Towing Tank, in the presence of simulated broken ice
<p>This data set presents a collection of measurements carried out at CEHINAV Towing Tank. The colletion includes several rar files described below:</p> <ul> <li><strong>Towing_test.rar</strong>: Raw data (ASCII files) containing the following information: <ul> <li>Time (Chanel 1)</li> <li>Velocity (Chanel 2)</li> <li>Resistance (Chanel 4)</li> <li>Laser position bow (Chanel 5)</li> <li>Laser position stern (Chanel 6)</li> <li>Laser position longitudinal (Chanel 7)</li> <li>Absolute carriage position (Chanel 8)</li> </ul> </li> <li><strong>Towed_self_propulsion</strong>: Raw data (ASCII files) containing the followig information: <ul> <li>Time (Chanel 1)</li> <li>Velocity (Chanel 2)</li> <li>RPM engine (Chanel 3)</li> <li>Resistance (Chanel 4)</li> <li>Laser position bow (Chanel 5)</li> <li>Laser position stern (Chanel 6)</li> <li>Laser position longitudinal (Chanel 7)</li> <li>Thrust (Chanel 8)</li> <li>Torque (Chanel 9)</li> <li>Absolute carriage position (Chanel 11)</li> </ul> </li> <li><strong>Figures_coverage</strong>: PNG files with images of block coverage tested and files containing the relative position during the test.</li> <li><strong>HESPERIDES_model.msd</strong>: Maxurf file with the geometry of the model tested.</li> </ul> <p> </p> <p>The tests were conducted in february and november of 2020.</p>
Bhiwkund, Maharashtra, India. View toward Bhiwkund tank and village.
<p>Bhiwkund, Maharashtra, India. View toward Bhiwkund tank and village, as documented 03/2018.</p>
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.