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1,308 results for “Vehicle”
FIGURE 6 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 6. Paloniella garmsi sp. nov. male. A—habitus; B—head, frontal view; C—head laterad; D—head, dorsad; Eantenna; F—parameres and aedeagus. Scales: A = 1 mm; B–E = 0.5 mm; F = 0.1 mm.
FIGURE 5 in Vehicle-mounted net sampling of airborne micro-Heteroptera in western Liberia, West Africa: 1. Isometopinae (Miridae)
FIGURE 5. Paloniella erinacea sp. nov. male. A—habitus; B—head, thorax dorsad from a flat angle highlighting the pubescence and head length; C—head, frontal view; D—head, antero-dorsad; E–F—heads, laterad; G–H—antenna II; Iparameres and aedeagus. Scales: A = 1 mm; B–D, G–H = 0.5 mm; E–F = 0.3 mm; I = 0.1 mm.
The Toybox Dataset of Visual Object Transformations-Part 3: Vehicles
<p>We introduce a new video dataset called Toybox for computer vision research. Videos in Toybox come from first-person, wearable camera recordings of common household objects and toys being manually manipulated to undergo structured transformations like rotations and translations. This part three of the three-part dataset. Part three contains videos of toy vehicles: car, truck, airplane and helicopter. Part one and two include animals and households, respectively.</p>
Characterization of Road Condition with Data Mining Based on Measured Kinematic Vehicle Parameters, Data
<p>Data for Paper "Characterization of Road Condition with Data Mining Based on Measured Kinematic Vehicle Parameters"</p>
Vehicle CAN bus data (with GPS)
<p>The dataset contains 20Hz sampled CAN bus data from a passenger vehicle, e.g. WheelSpeed FL (speed of the front left wheel), SteerAngle (steering wheel angle), Role, Pitch, and accelerometer values per direction.</p> <p>In contrast to the dataset published at https://zenodo.org/record/2658168#.XMw2m6JS9PY we now have GPS data from the vehicle (see signals 'Latitude_Vehicle' and 'Longitude_Vehicle' in h5 group 'Math') and GPS data from the IMU device (see signals 'Latitude_IMU', 'Longitude_IMU' and 'Time_IMU' in h5 group 'Math') included. However, as it was exported with single_precision, therefore we lost some precision for those GPS values.</p> <p>We are currently looking for a solution and will update the records if possible.</p> <p>For data analysis we use R and R Studio (https://www.rstudio.com/) and the library h5.</p> <p>e.g. check file with R code:</p> <p>library(h5)</p> <p>f <- h5file("file path/20181113_Driver1_Trip1.hdf")</p> <p>summary(f["CAN/Yawrate1"][,])</p> <p>summary(f["Math/Latitude_IMU"][,])</p> <p>h5close(f)</p>
Dataset for: "On the role of electric vehicles towards low-carbon energy systems: Italy and Germany in comparison"
<p>Input files for EnergyPlan models (Italy and Germany energy systems in 2016).</p> <p>See EnergyPlan website (<a href="https://www.energyplan.eu/">https://www.energyplan.eu/</a>) for instructions.</p>
FIGURE 3. Reduviidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 3. Reduviidae. A, Fusius dilutus liberiensis; B, Hediocoris sp.; C, Khafra elegans; D, Lisarda vandenplasi. Genus Microstemmatodes. E+F, habitus and paramere of M. occidentalis observed from different angles; G+H, M. atrocyanea, specimen from Cameroon (Zoologisches Museum Hamburg). Scale bars: A–D, E+G, 5 mm; F+H, 0.5 mm.
FIGURE 1. Enicocephalidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 1. Enicocephalidae. A+B, Embolorrhinus cornifrons, dorsal habitus, lateral view of head and partial thorax; C, Henschiella sp., head and pronotum; D, Hoplitocoris saegeri, head and pronotum; E, H. pauliani, head and pronotum; F, Oncylocotis angustus, head and pronotum; G, O. curculio, dorsal habitus; H, O. gillonae, head and pronotum; I, Systelloderes sp. near stuckenbergi, head and pronotum, antennal segments II–IV. Scale bars: A+G, 2mm; C, D–F, H, I, 0.5mm; for antenna I, 0.2mm.
FIGURE 2. Reduviidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 2. Reduviidae. A, Acanthaspis sulcipes; B, Ademula pauliani; C, Androclus pictus; D, Authenta quadridens; E, Cosmolestes aethiopicus; F, Ectomocoris pretiosus; G, Empicoris sp. near morstatti; Scale bars: A–F, 5mm; G, 1mm.
FIGURE 4. Reduviidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 4. Reduviidae. A, Nagusta sp. near carayoni; B, N. gracilis; C, Oncocephalus subspinosus; D, O. zumpti; E, Peirates maurus; F, Peirates sp., lateral view of pygophore, and parameres; G, Peprius nodulipes; H, Petalocheirus rubiginosus, protibia, head and thorax; I, Pisilus tipuliformis; J, Platychiria murrayi, protibia and dorsal habitus; K, P. ugandensis, protibia and dorsal habitus; L, Parapirates cachani, dorsal habitus, pygophore spine, right and left parameres in lateral views. Scale bars of habitus pictures: A–E, G, I–L, 5 mm.
FIGURE 6. Reduviidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 6. Reduviidae. A, Sirthenea africana; B, Sphedanolestes picturellus; C, Vestula lineaticeps; D, Villiersella longispinis. Scale bars: 5 mm.
FIGURE 5. Reduviidae. A in Notes on Afrotropical Enicocephalidae and Reduviidae (Hemiptera: Heteroptera) with emphasis on vehicle-mounted net samples from Liberia, West Africa
FIGURE 5. Reduviidae. A, Rhynocoris albopilosus; B+C, R. bicolor, habitus, pygophore and parameres dorsal view; D+E, Rhynocoris sp., habitus, pygophore and parameres dorsal view; F, R. carmelita; G, R. hutsebauti; H, R. nitidulus; I, R. rapax; Scale bars of habitus pictures: 5 mm.
Towards ice core sampling by subsea robotic vehicles: Electronic supplement - Video from Coring Trials
<p>This video provides recordings of trials where a subsea manipulator arm was used for ice core sampling. </p> <p>It is a electronic supplement to "Towards ice core sampling by subsea robotic vehicles" by C. Katlein.</p> <p>The first coring system is a open source in-house built corer Thomsen et al. 2020:</p> <p>Steffen Thomsen, Mads Holm Hansen, Jeppe Pinholt Lillethorup, Frederik Sebastian Tirsgaard, Adam Flytkjær, Claus Melvad, Søren Rysgaard, Daniel F. Carlson,<br>An affordable and miniature ice coring drill for rapid acquisition of small iceberg samples, HardwareX, Volume 7, 2020, e00101, ISSN 2468-0672, https://doi.org/10.1016/j.ohx.2020.e00101.</p> <p>design files are available at <a href="https://www.sciencedirect.com/science/article/pii/S2468067220300109" target="_blank" rel="noopener">https://www.sciencedirect.com/science/article/pii/S2468067220300109</a> </p> <p>The second coring system is a Kovacs Mark II <a href="https://kovacsicedrillingequipment.com/coring-systems/coring-systems/">https://kovacsicedrillingequipment.com/coring-systems/coring-systems/</a> </p>
Supplementary material for publication "The combined second-echelon vehicle routing problem - Integrating last-mile deliveries into public transport"
<p>Supplementary material for publication "The combined second-echelon vehicle routing problem - Integrating last-mile deliveries into public transport".</p> <p> </p> <p>Includes bus times (provided by the data set goettingen from the scientific software toolbox LinTim (https://lintim.net/)), customer nodes, and distances and results for the algorithms for different vehicle speeds, capacities, number of second-echelon vehicles and number of customers.</p>
FIG. 5. Neobythites unicolor, USNM 422668, 93 in Discovery of a Distinctive Spotted Color Pattern in the Cuskeel Neobythites unicolor (Teleostei, Ophidiidae) Based on Underwater-Vehicle Dives, with New Records from the Southern and Eastern Caribbean
FIG. 5. Neobythites unicolor, USNM 422668, 93 mm SL, from off Curaçao; (A) after several months of freezing and subsequent defrosting (Carole Baldwin and Ross Robertson; mirror image); (B) after 508 days preservation (Marcus Krag).
FIG. 3 in Discovery of a Distinctive Spotted Color Pattern in the Cuskeel Neobythites unicolor (Teleostei, Ophidiidae) Based on Underwater-Vehicle Dives, with New Records from the Southern and Eastern Caribbean
FIG. 3. Neobythites unicolor encountered during ROV dives (unvouchered photographs). (A, B) USNM 444965, ca. 10 cm SL, off Virgin Islands, Anegada Passage, Noroit Seamount (Ocean Exploration Trust and U.S. Geological Survey); (C) USNM 444964, ca. 8 cm SL, off Puerto Rico, Mona Passage, Pichincho plateau. (NOAA Okeanos Explorer Program).
FIG. 2 in Discovery of a Distinctive Spotted Color Pattern in the Cuskeel Neobythites unicolor (Teleostei, Ophidiidae) Based on Underwater-Vehicle Dives, with New Records from the Southern and Eastern Caribbean
FIG. 2. Neobythites unicolor from off Curaçao (A–K) and from more northern (158N) areas (L–N). (A–D, in red frame) USNM 432331, 94 mm SL; (A) in situ photograph, inside a grass-mat trap; (B, C) shortly after capture above two different backgrounds; (D) after preservation; (E–H, in blue frame) USNM 431721, 69 mm SL; (E) in situ photograph; (F, G) shortly after capture above two different backgrounds; (H) after preservation; (I–K, in green frame) USNM 433497, 38 mm SL; (I, J) shortly after capture above two different backgrounds; (K) after preservation; (L–M, in yellow frame) USNM 440570, 65 mm SL, from off Dominica; (L) shortly after capture; (M) after freezing and preservation; (N) ZMUC P77940, paratype, 104 mm SL, from NW Caribbean. Sources: (A, E) Carole Baldwin and Ross Robertson, courtesy of substation Curaçao; (B, C, F, G, I, J) Carole Baldwin and Ross Robertson; (D, H, K, M, N) Marcus Krag, ZMUC; (L) Chris Richards, Curaçao Sea Aquarium.
FIG. 1 in Discovery of a Distinctive Spotted Color Pattern in the Cuskeel Neobythites unicolor (Teleostei, Ophidiidae) Based on Underwater-Vehicle Dives, with New Records from the Southern and Eastern Caribbean
FIG. 1. Distribution of Neobythites unicolor. Localities of specimens encountered and collected by the Curasub submersible are indicated by squares; triangles indicate the two ROV stations with verified images of this species; circles indicate all localities of specimens studied by Nielsen (1999), slightly updated (see text). Enlarged symbols with numbers indicate multiple, closely overlapping localities.
Open Data for SLR Artificial Intelligence and Electric Vehicles
Open the record for dataset details and reuse information.
Dataset and code for "Higher labor intensity in US automotive assembly plants after transitioning to electric vehicles"
<p>Dataset and code for the article: "<span>Higher labor intensity in US automotive assembly </span><span>plants after transitioning to electric vehicles" submitted to Nature Communications. </span></p>
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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)
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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.