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1,032 results for “vertical”
Dataset for continuous dehydrogenation of perhydro benzyltoluene and perhydro dibenzyltoluene in a packed bed vertical tubular reactor
<p>This entry contains data from the continuous dehydrogenation of perhydro benzyltoluene and perhydro dibenzyltoluene in a packed bed vertical tubular reactor.</p><p>Operating conditions for perhydro benzyltoluene (H12-BT): reaction pressure 3, 4, 5 bar(a); heating temperature 290 - 320 °C, feed flow rate 5 - 25 mL/min.</p><p>Operating conditions for perhydro dibenzyltoluene (H18-DBT): reaction pressure 3 bar(a); heating temperature 290 - 320 °C, feed flow rate 5 - 25 mL/min; reaction pressure 1, 2 bar(a); heating temperature 290 - 310 °C, feed flow rate 5 - 25 mL/min.</p><p>Feed flow rates of 5, 10, 15, 20 and 25 mL/min correspond to liquid hourly space velocities (LHSV) of 0.6, 1.3, 1.9, 2,5 and 3.2 1/h.</p><p>The data sets provided contain temperature profiles, mean reaction temperatures, achieved conversions (degree of dehydrogenation, DoD) and mass fractions of evaporated LOHC for both carrier systems.</p><p> </p><p> </p>
Figure 1 in Vertical distribution of liverwort communities and their relationship with environmental factors in a karst sinkhole in south-western China
Figure 1. Diagram of Monkey-Ear Sinkhole.
Figure 4 in Vertical distribution of liverwort communities and their relationship with environmental factors in a karst sinkhole in south-western China
Figure 4. The vertical distribution of liverwort communities at different depths.
The datest, Aerosol Radiation Effect Outweighs VOCs Reactivity Effect on Vertical Ozone Photochemical Features
<p>该数据集包括所有使用的原始和过滤后的VOCs和NO2观测数据,以及模型输入数据和从模拟实验中提取的所有结果。</p>
Dataset to accompany the manuscript "Drifter observations reveal intense vertical velocity in a surface ocean front"
<p>This dataset has been used in the publication "Drifter observations reveal intense vertical velocity in a surface ocean front"</p> <p>The dataset contains data from the following platforms<br> · Drifters<br> · Underway-CTD</p>
The early life of a leaf-cutter colony constrains symbiont vertical transmission
<p>The early life of a leaf-cutter colony is characterized by the dispersal of a female alate (winged "queen") carrying a fungal pellet, and the subsequent establishment of a foundress (workerless "queen") raising her incipient fungal garden and colony. The symbiotic roach Attaphila fungicola hitchhikes on female alates during leaf-cutter nuptial flights, which strongly suggests that roaches are vertically transmitted to foundresses and their incipient colonies; however, weak compatibility between roaches and incipient gardens may constrain roach vertical transmission. </p> <p>This dataset contains data from an experiment in which the mortality of incipient fungal gardens and foundresses were scored in treatments with or without Attaphila roaches. Additionally, in roach trials we noted whether or not the roaches disturbed fungal gardens during observational bouts conducted during the experiment (see below for more detailed description of behavioral observations). Contrary to traditional assumptions, our results indicate that roaches harm incipient gardens, suggesting that roaches are not well adapted to use vertical transmission between colonies.</p> <p class="Body"> </p>
Chesapeake Bay Vertical Land Motions 2020
<p>Global Positioning System (GPS) data from the 2020 campaign in the Chesapeake Bay region</p>
Vertical coupling of gusts in the lower boundary layer during super typhoons and squall lines
<p>10 Hz Wind data of four cases.</p>
Data available for ''Vertical Gradient of Size-Resolved Aerosol Composition over the Arctic Reveals Cloud Processed Aerosol in-cloud and above Cloud"
<p>Folder containing the data of CCSEM and STXM measurements.</p>
Text-fig. 6. Quercus sp. Red Oak, UF 279-24550. a, b: Wood semi-ring-porous to diffuse-porous; vessels exclusively solitary; thinwalled tyloses in wide vessels; diffuse, diffuse-in-aggregates axial parenchyma; rays of two distinct sizes. TS. c: Rays of two distinct sizes, TLS. d: Vessel-vasicentric tracheid pitting, RLS. e: Vessel-ray parenchyma pitting with reduced borders, vertically elongate, RLS. f: Narrow rays 1-2 cells wide, TLS. g: Ray composed of procumbent cells, RLS. Scale bars: 200 µm in a, b, c; 50 µm in d, f, g; 20 µm in e. in A Diverse Assemblage Of Late Eocene Woods From Oregon, Western Usa
Text-fig. 6. Quercus sp. Red Oak, UF 279-24550. a, b: Wood semi-ring-porous to diffuse-porous; vessels exclusively solitary; thinwalled tyloses in wide vessels; diffuse, diffuse-in-aggregates axial parenchyma; rays of two distinct sizes. TS. c: Rays of two distinct sizes, TLS. d: Vessel-vasicentric tracheid pitting, RLS. e: Vessel-ray parenchyma pitting with reduced borders, vertically elongate, RLS. f: Narrow rays 1-2 cells wide, TLS. g: Ray composed of procumbent cells, RLS. Scale bars: 200 µm in a, b, c; 50 µm in d, f, g; 20 µm in e.
Influence of soil type and vertical zonation on soil fungal communities associated with natural jack pine forests
<p>Natural jack pine forests established on sandy eskers and clayey soils represent a unique habitat in the boreal forest in northeastern Canada and are generally associated with well-differentiated soil horizons, but little is known regarding their soil fungal diversity and how soil type and vertical zonation would shape their communities. To address this question, we characterized soil fungal communities from litter, organic and mineral horizons in 18 natural jack pine forests in esker and clayey soils using ITS2 rDNA metabarcoding. Ectomycorrhizal fungi dominated the organic and mineral horizons in esker soils, while saprotrophic fungi were dominant in clayey soils. The dominance of ectomycorrhizal fungi coincided with higher C accumulation within the organic horizon in esker soils. The nutrient-poor and more acidic esker sites harbored less diverse ectomycorrhizal and saprotrophic communities than clayey soils. Several stress-tolerant and melanin-rich fungal taxa were indicators of esker soils. However, fungal communities were more distinct between horizons than soil types and soil type effects differed along the soil profile. Our findings highlight the need to fill knowledge gaps in soil fungal diversity associated with jack pine forests and pave the way for adapted and multi-resource forest management in esker forest ecosystems considering their underground fungal specificities.</p>
Weak, Vertically Stronger Main Himalayan Thrust in the India-Asia Collision
<p>This repository includes the used GNSS and InSAR data for the paper:</p> <p>Li, S., Schulte-Pelkum, V., Barnhart, W. D., Karplus, M., Chen, L., Oncken, O., 2024. <br>"Weak, Vertically Stronger Main Himalayan Thrust in the India-Asia Collision" <br>submitted to Geophysical Research Letters.</p>
Рис. 4. Àинамика гибеΛи гусениц коΛьчатого шеΛкопряΔа, собранных в районе УПН, соΔержащихся в Λабораторных усΛовиях. ВертикаΛьно: коΛичество погибших гусениц (% от чисΛа собранных за весь периоΔ иссΛеΔований в 2019 г. гусениц). ГоризонтаΛьно: Δата осмотра в Λаборатории. В правом верхнем угΛу графика: Δата сбора гусениц в районе УПН. — гибеΛь от вируса яΔерного поΛиэΔроза; — гибеΛь от бактериоза Fig. 4. Dynamics of death of the Lackey moth caterpillars collected at the SOM and kept in the laboratory, 2019. Vertical: number of deaths (percentage from the total number of caterpillars collected in 2019 (578 caterpillars)); horizontal: dates of laboratory controls. Upper right corner: collection date. — death from NPV; — death from bacteriosis in Lackey Moth (Malacosoma Neustria L., Lasiocampidae, Lepidoptera) Population During The Eruptive Phase
Рис. 4. Àинамика гибеΛи гусениц коΛьчатого шеΛкопряΔа, собранных в районе УПН, соΔержащихся в Λабораторных усΛовиях. ВертикаΛьно: коΛичество погибших гусениц (% от чисΛа собранных за весь периоΔ иссΛеΔований в 2019 г. гусениц). ГоризонтаΛьно: Δата осмотра в Λаборатории. В правом верхнем угΛу графика: Δата сбора гусениц в районе УПН. — гибеΛь от вируса яΔерного поΛиэΔроза; — гибеΛь от бактериоза Fig. 4. Dynamics of death of the Lackey moth caterpillars collected at the SOM and kept in the laboratory, 2019. Vertical: number of deaths (percentage from the total number of caterpillars collected in 2019 (578 caterpillars)); horizontal: dates of laboratory controls. Upper right corner: collection date. — death from NPV; — death from bacteriosis
Supporting data: Nutrient vertical flux in Indonesian seas as constrained by non-atmospheric helium-3
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Figure 3 from: de Oliveira Dias C, de Araujo AV, Bonecker SLC (2018) Vertical distribution and structure of copepod (Arthropoda: Copepoda) assemblages in two different seasons down to 1,200 m in the tropical Southwestern Atlantic. Zoologia 35: 1-11. https://doi.org/10.3897/zoologia.35.e13886
Figure 3 Vertical distribution of the mean and standard deviation of the copepod density (log ind.m-³) during two sampling periods: rainy season, RS; dry season, DS.
Figure 5 from: de Oliveira Dias C, de Araujo AV, Bonecker SLC (2018) Vertical distribution and structure of copepod (Arthropoda: Copepoda) assemblages in two different seasons down to 1,200 m in the tropical Southwestern Atlantic. Zoologia 35: 1-11. https://doi.org/10.3897/zoologia.35.e13886
Figure 5 DbRDA ordination derived from DistLM analysis, including the main environmental parameters explaining the variability in copepod assemblage structures during the sampling period. Temp, temperature; Sal, salinity. Black triangle, rainy season 1 m; open triangle, dry season 1 m; black circle, rainy season 250 m; open circle, dry season 250 m; black square, rainy season 800 m; open square, dry season 800 m; black polygon, rainy season 1,200 m; open polygon, dry season 1,200 m.
Figure 1 from: de Oliveira Dias C, de Araujo AV, Bonecker SLC (2018) Vertical distribution and structure of copepod (Arthropoda: Copepoda) assemblages in two different seasons down to 1,200 m in the tropical Southwestern Atlantic. Zoologia 35: 1-11. https://doi.org/10.3897/zoologia.35.e13886
Figure 1 Salinity and temperature of the five water masses (0–3260 m) in the Campos Basin, central Brazilian coast, modified from Bonecker et al. (2014). Solid line = temperature; dashed line = salinity; SS, Subsurface Water; SACW, South Atlantic Central Water; AAIW, Antarctic Intermediate Water; UCDW, Upper Circumpolar Deep Water; NADW, North Atlantic Deep Water.
Figure 4 from: de Oliveira Dias C, de Araujo AV, Bonecker SLC (2018) Vertical distribution and structure of copepod (Arthropoda: Copepoda) assemblages in two different seasons down to 1,200 m in the tropical Southwestern Atlantic. Zoologia 35: 1-11. https://doi.org/10.3897/zoologia.35.e13886
Figure 4 Vertical distribution of the mean diversity, species richness, and evenness of total copepods in the Campos Basin: dark blue bars, diversity; cobalt bars, richness; cyan bar, evenness. RS, rainy season; DS, dry season.
Vertical Transport by Frontal Subduction Alleviating Hypoxia in a Highly Stratified Estuary
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Supplemental Figure S2: Diagram of a metal rack with three shelves divided vertically to conform six growing spaces in the walk-in growth chamber. Each growing space had a different light level to end up with six different treatments in the rack (one per growing space). Three of these racks were placed inside the walk-in growth chamber, completing 18 growing spaces in total.
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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.