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207 results for “tanks”
Mandhal मांढळ (Maharashtra). View of one of a pair of tanks to the south of the town
<p>Mandhal मांढळ (Maharashtra). View of one of a pair of tanks to the south of the town, looking south toward Hudki Tekri, the hillock where a number of Vākāṭaka sculptures were found. At the ends of the tank proper, a brick temple and Śiva liṅgas of the Vākāṭaka period were discovered during excavations conducted by Nagpur University.</p>
Site 28, Hueco Tanks, TX
CMYK enhanced image. Source: Objaverse 1.0 / Sketchfab
Jerry the tank
Low poly tank (1600 Tris) Made for College project Source: Objaverse 1.0 / Sketchfab
AMX-13 SM1 Tank - National Museum (Render 2)
"2022 marks the 80th anniversary of the British Surrender to the Imperial Japan Army on 15 February 1942. The next day, the Japanese army organised a procession of tanks that took part in the invasion to parade past City Hall to commemorate the occupation of the island. <br> <br> Twenty-seven years later, four years after Singapore's independence, the first tanks of the Singapore Armed Forces (SAF) paraded past City Hall during the National Day Parade in 1969. The French-made AMX-13 tanks led the mobile column and had a lasting impression on the spectators and general public. These tanks signified the fortitude, indomitable will and fighting spirit of our fledgling nation, and demonstrated the SAF's defence capability and the role of national servicemen during this period of newly-independent Singapore's history. <br> <br> In 1988, the AMX-13 tank was upgraded to the AMX-13 SM1 tank to improve its efficiency and cost-effectiveness. This decommissioned is on special display at National Museum Singapore." Source: Objaverse 1.0 / Sketchfab
Zenit_Tank
Source: Objaverse 1.0 / Sketchfab
Water Tank
water tank without texture Source: Objaverse 1.0 / Sketchfab
Site N17E, Hueco Tanks, TX
Source: Objaverse 1.0 / Sketchfab
Retrieval of dominant methane (CH4) emission sources, the first high resolution (1-2m) dataset of storage tanks of China in 2000-2021
<p>We presented a storage tank inventory of 92 typical cities with high volatile organic compounds, in response to the Three-Year Action Plan for Winning the Blue Sky Defense War, proposed by the State Council of China. It comprises of 14461 storage tanks, which are extracted based on high spatail resolution images of GaoFen-1, GaoFen-2, GaoFen-6, and Ziyuan satellites in year of 2021. It is the first inventory covering detailed distribution locations and boundaries of storage tanks. The inventory we aim to share provides a basic distribution of storage tanks in different sizes and will contribute to support environmentally friendly regulations proposal for more effective pollution control and energy resource management.</p>
Final point cloud results of DAR-MVSNet on Tanks and Temples benchmark
<p>Final point cloud results of DAR-MVSNet on Tanks and Temples benchmark.</p>
Chemiluminescent Reaction Across a Salt-Freshwater Interface - Sand Tank Experiment
<p>This dataset includes experimental images of a chemiluminescent reaction taking place across the salt-freshwater interface. Images are provided for several steady state saltwater wedges.</p>
Litter–trapping tank bromeliads in five different forests: carbon and nutrient pools and fluxes
Bromeliads are the most abundant litter–trapping plants in Neotropical forest canopies. By intercepting litter, bromeliads obtain and retain nutrients before they reach the pedosphere. Here, we analyzed the litter captured and stored by tank bromeliads (TB) in five different forests along an elevation gradient in Mexico. Among those forests, carbon and nutrient pools and nitrogen fluxes in TB were estimated in a mangrove (MF) and a semi–deciduous tropical forest (SDTF). The composition of the litter trapped by TB along the gradient was similar to forest litterfall and was mainly composed of leaves. Most of the litter was captured in the dry season and we found a significant effect of projected plant area and the interaction between month and site on bromeliad litter capture. Moreover, litter stored in TB increased exponentially with projected plant area and differed between three studied species. In the MF (with ca. 2,700 TB ha<sup>-1</sup>), barely ca. 1% of annual litterfall is trapped by these plants, but even in the SDTF, with >10,000 TB ha<sup>-1</sup>, only ca. 2.4% is captured. We found that carbon and nitrogen pools in TB were small and represented < 1% of the carbon and nitrogen stored in forest aboveground biomass. Furthermore, the residence time of litter trapped in TB was not particularly large and was similar to that of litter on the forest floor. In light of our results, we conclude that in the studied forests the effect of TB on the forest carbon and nutrient cycle is negligible.
Fig. 2 in Fundicoccus ignavus gen. nov., sp. nov., a novel genus of the family Aerococcaceae isolated from bulk tank milk
Fig. 2. Up-to-date bacterial core gene tree (UBCG) based on a multigene alignment with 92 housekeeping genes. Genome data of type strains of the type species from the family Aerococcaceae available on the EzBioCloud database were used. The three isolates of this study are marked in bold. The tree was calculated based on the Tamura–Nei model using MEGA X software. Two hundred repetitions were performed to reveal statistic support which is shown at branch nodes (bootstrap values>50 %). Lactococcus lactis subsp. lactis was used as an outgroup. Bar, 0.1 substitution per nucleotide position.
Fig. 1 in Fundicoccus ignavus gen. nov., sp. nov., a novel genus of the family Aerococcaceae isolated from bulk tank milk
Fig. 1. Maximum-likelihood tree based on the almost-complete 16S rRNA gene sequences of strains WS4937T, WS4759, WS5303 and type strains of all species of the family Aerococcaceae. Type strains of the type species are marked in bold. Sequences of the strains were retrieved from EzBioCloud. The tree was calculated using the Tamura–Nei model. Bootstrap values (>50%) based on 500 repetitions are shown at branch nodes. Analyses were performed using MEGA X. Lactococcus lactis subsp. lactis was used as an outgroup. Bar, 0.01 substitutions per nucleotide position.
Ancient Water Tank carved from a single stone
Photogrammetry scan of ancient indian water tank, carved from single stone@ mamallapuram (mahabalipuram), The mesh is completely optimized lowest possible polygon and properly UV unwrapped , Game ready lowpoly geometry. Source: Objaverse 1.0 / Sketchfab
Panzer VI Tiger War Tank
War Tank modeled and textured in a day, in Blender. Source: Objaverse 1.0 / Sketchfab
Baroclinic instability induced mesoscale and submesoscale processes in the river plumes: A laboratory investigation on a rotating tank
<p>This dataset studied the baroclinic instability (BI) induced mesoscale and submesoscale processes by conducting laboratory rotating flume experiments. We acquired the high-resolution velocity data by Parrticle Image Velocity (PIV). The mesoscale and submesoscale vortices were identified and tracked, and the variations of the instabilities and kinetic energy of the plume system under different inflow conditions and slopes were summarized. Number '1' to '33' mean cases number; 'gs', 'ss', and 'ns' stand for 'gentle slope', 'steep slope', and 'no slope'; 'T20' to 'T60' correspond to the rotation period from 20 to 60 s; 'g4' to 'g10' correspond to the reduced gravity between the buoyant plume and environmental fluid from 4 to 10 cm/s^2. 'vor_char' means the vortices characteristics including the time series of the vortex center and vortex contour.</p>
Final point cloud results of SPC-MVSNet on Tanks and Temples benchmark
<p>SPC-MVSNet在坦克和寺庙基准上的最终点云结果。</p>
Figure 6 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 6. Habitat of C. florae in Alto de Piedra, Panama. A, general view of the pasture with solitary trees. B, large cf. Werauhia bromeliad. C, collecting of beetles from leaf axils. D, specimen of C. florae crawling on the leaf.
Figure 5 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 5. Details of instar III larva of C. florae. A, head capsule, dorsal aspect (scale-like microsculptures not represented). B, maxilla, dorsal aspect. C, labium, dorsal aspect. D, metathoracic leg, anterior surface. E, same, posterior surface. F, last abdominal segment, dorsal aspect. G, same, ventral aspect. Numbers and lowercase letters refer to primary setae and pores, respectively; asterisks refer to secondary seta (including additional setae) or pores. AB, abdominal segment VIII (= LAS). CO, coxa. FE, femur. GA, galea. LA, labium. MX, maxilla. PT, pretarsus. TA, tarsus. TI, tibia. TR, trochanter. UR, urogomphus. sp, spinulae. Pores TAc, TAd, Tae, and TAf not represented. Scale bars = 0.2 mm.
Figure 1 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 1. Habitus of bromeliadicolous Copelatus. A, C. bimaculatus (Santo Amaro da Imperatriz). B, C. bimaculatus (Nova Friburgo). C, C. bromeliarum (Henri Pittier). D, C. espinhasso (holotype). Scale bar = 2.0 mm.
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OpenNeuro
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