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Dataset results
207 results for “tanks”
Tank Т-34-85
Source: Objaverse 1.0 / Sketchfab
Sovet-tank model 2
Source: Objaverse 1.0 / Sketchfab
Environmental DNA as a non-invasive alternative for surveying aquatic communities in tank bromeliads
Open the record for dataset details and reuse information.
Litter–trapping tank bromeliads in five different forests: carbon and nutrient pools and fluxes
Open the record for dataset details and reuse information.
Lattice Boltzmann simulations on the tumbling to tank-treading transition: effects of membrane viscosity
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Itarsi (इटारसी, Sehore District) Madhya Pradesh. General view of tank toward Salkanpur.
<p>Itarsi (इटारसी, Sehore District) Madhya Pradesh. General view of tank toward Salkanpur.</p>
Itarsi (इटारसी, Sehore District) Madhya Pradesh. Tank looking west to Salkanpur.
<p>Itarsi (इटारसी, Sehore District) Madhya Pradesh. Tank looking west to Salkanpur.</p>
Mānpur मानपुर (रायसेन ज़िला) Madhya Pradesh. Village tank.
<p>Mānpur मानपुर (<a href="https://hi.wikipedia.org/wiki/%E0%A4%B0%E0%A4%BE%E0%A4%AF%E0%A4%B8%E0%A5%87%E0%A4%A8_%E0%A4%9C%E0%A4%BC%E0%A4%BF%E0%A4%B2%E0%A4%BE">रायसेन ज़िला</a>) Madhya Pradesh. Village tank. </p>
Raisen रायसेन (Madhya Pradesh). General view of the large medieval tank.
<p>Raisen रायसेन (Madhya Pradesh). General view of the large medieval tank.</p>
Benchmark Data Set of "epiTracker - A framework for highly-reliable particle tracking for the quantitative analysis of fish movements in tanks"
<p>Data set containing five videos differing in fish species (zebrafish and medaka), number of individuals (3 to 10), lighting and type of tank for comparison of tracking algorithms. For each video a Matlab file (*.mat) exists, which contains the position data of the fish.</p> <p>Each of the five videos consists of ~10000 frames, which at a frame rate of 30FPS corresponds to a length of about 5.5min.</p>
Nonlinear dynamic model and rollover threshold of a liquid tank semi-trailer
<p>A refined dynamic model of a tractor-semitrailer, including the nonlinear tire force and tank swing force, is established, and the fluid force and torque in the liquid tank are obtained through simulation by using the fluid mechanics software Fluent. Two kinds of tests, the tire corner stiffness test and tire roll stiffness test, are designed and performed using the KHAT flat bed test rig for tires, and a nonlinear model of the tire is obtained. The driving vehicle body state and handling stability of the liquid tank semi-trailer are studied through the model. The roll angle and lateral accelerationare used as the rollover characterization parameters. The dynamic lateral load transfer rate (LTR) is used as the rollover index to characterize the rollover threshold. The conclusions are of great significance for running status monitoring, rollover early warning and rollover avoidance controlfor liquid tank semi-trailers.</p>
Figs 17a–i in Five New Spathidiids (Ciliophora: Bromeliads Haptoria) from Caribbean Tank
Figs 17a–i. Spathidium bromelicola (a–e) and Spathidium aciculare (f–i, from Foissner et al. 2002) from life (b, c, f) and after protargol impregnation (a, d, e, g–i). a – right side view of a 200 µm long specimen with impregnated cilia, showing the heteromorphic tail of brush row 3 (arrowheads); b – resting cyst with inactive contractile vacuole, diameter 45 µm; c – posterior portion of dorsal brush, longest bristles 3 µm. The arrowhead denotes the heteromorphic, monokinetidal tail of brush row 3; d, e – ventral and dorsal views, showing the slightly cuneate oral bulge and the isostichad dorsal brush with dikinetids more widely spaced in row 3 than in rows 1 and 2. The asterisk marks the widened area between the last ventral and the first left side ciliary row; f – Spathidium aciculare, oral bulge extrusomes from two Australian populations, length 7–8 µm; g, h – Spathidium aciculare, left side and frontal view of anterior body region, showing the heterostichad dorsal brush and the elongate elliptical circumoral kinety (oral bulge); i – Spathidium aciculare, right side overview. B(1–3) – dorsal brush rows, BU – oral bulge, CK – circumoral kinety, CP – cytopharyngeal entrance, EP – excretory pores, L – lipid droplets, MA – macronucleus, MI – micronuclei. Scale bars: 30 µm (g, h), 40 µm (b, d, e), and 50 µm (a, i).
Sizes of steelhead families raised in hatchery tanks vs in artificial streams
<p>Salmonid fish raised in hatcheries often have lower fitness (number of returning adult offspring) than wild fish when both spawn in the wild. Body size at release from hatcheries is positively correlated with survival at sea. So one explanation for reduced fitness is that hatcheries inadvertently select for trait values that enhance growth rate under the unnatural environment of a hatchery, but that are maladaptive in the wild environment. A simple prediction of this hypothesis is that juveniles of hatchery origin should grow more quickly than fish of wild origin under hatchery conditions, but should have lower survival under wild conditions. We tested that hypothesis using multiple full sibling families of steelhead (Oncorhynchus mykiss) that were spawned using either two wild parents (WxW) or two first-generation hatchery (HxH) parents. Offspring from all the families were grown together under hatchery conditions and under semi-natural conditions in artificial streams. HxH families grew significantly faster in the hatchery, but had significantly lower survival in the streams. That we see this tradeoff after only a single generation of selection suggests that the traits involved are under very strong selection. We also considered one possible alteration to the hatchery environment that might reduce the intensity of selection among families in size at release. Here we tested whether reducing the fat content of hatchery feed would reduce the variance among families in body size. Although fish raised under a low-fat diet were slightly smaller, the variation among families in final size was unchanged. Thus, there is no evidence that reducing the fat content of hatchery feed would reduce the opportunity for selection among families on size at release.</p>
Distribution. Tanke Salokko, SE peninsula of Sulawesi. in Muridae
Distribution. Tanke Salokko, SE peninsula of Sulawesi.
Distribution. Tanke Salokko, SE peninsula of Sulawesi. in Muridae
Distribution. Tanke Salokko, SE peninsula of Sulawesi.
Distribution. Tanke Salokko and the Mowewe lowlands on the SE peninsula of Sulawesi. in Muridae
Distribution. Tanke Salokko and the Mowewe lowlands on the SE peninsula of Sulawesi.
Figure 3 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 3. Distributional map of bromeliadicolous Copelatus species.
Fig. 1 in The effect of structural enrichment in hatchery tanks on the morphology of two neotropical fish species
Fig. 1. Schematic drawing of the four types of structuring applied in the tanks: Control: the tank did not receive any type of structuring; Logs: the tank was structured with six eucalyptus tree logs, set in the middle of the tank so that they were submersed after the tank was filled. Three of the logs were arranged along the tank and the other three were arranged perpendicular; Artificial macrophytes: the tank received plastic macrophytes hung on a kind of clothesline placed above the tank, so that the plastic filaments came in contact with the water. Each tank received twenty five plastic macrophytes, arranged in five parallel rows of five plants each; Logs and artificial macrophytes: the tank received both types of structures, submersed logs and artificial macrophytes.
FIGURE 1 in Ciliate species from tank-less bromeliads in a dry tropical forest and their geographical distribution in the Neotropics
FIGURE 1. Location of the Biosphere Reserve Chamela-Cuixmala, Jalisco, Mexico.
Figure 3 from: Morales-Briones DF, Romoleroux K, Tank DC (2019) Three new species of Lachemilla (Rosaceae) from South America. PhytoKeys 127: 93-119. https://doi.org/10.3897/phytokeys.127.36324
Figure 3 Lachemillarothmaleriana. A Habit B stem, apical leaves C stem, basal leaves D flowering branch E flower. Illustration by S. Cordero.
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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.