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464 results for “Style”
50s style car with interior
Source: Objaverse 1.0 / Sketchfab
Low Poly, Old-Style TV
A simple, yet stylized free TV. Source: Objaverse 1.0 / Sketchfab
XPM-098 ASTt style end-blade, Sapsuk River, AK
XPM-098. ASTt style endblade from XPM-098 Trench 3 catalog number 466, Dates between 3100 and 2300. B.C. They are similar to varieties found at Russell Creek and at Hot Springs, but these are all older. SRO8-1-T3-U1-L2 Sapsuk River, Nelson Lagoon area, Alaska Peninsula, Alaska. Several salmon fishing sites. Early period dating 3200-2100 BCE, and a later occupation 100 BCE to 500 CE. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Maschner, H. et al. 2010. The Archaeology of the Sapsuk River, Alaska. An Occasional Papers Publication. Bureau of Indian Affairs, Alaska Region, Branch of Regional Archaeology, Anchorage. Source: Objaverse 1.0 / Sketchfab
XFP-054 ASTt Style Endblade, Sanak Island-Alaska
Arrow point or harpoon endblade, Sanak Island, Alaska. CAT# XFP-054-63-4 Regional ASTt style. XFP-054 is an early village in a dune area on the south side of Sanak Island, Alaska. The dune is deflating, leaving behind dozens of well-preserved houses and site features. It clearly demonstrates the village organization of this time period between 2200 and 1600 BCE. This is the time of the early occupation of Hot Springs Village on the Alaska Peninsula. These artifacts were scanned with either a Faro Edge Arm or a Minolta Vivid 9i. Processed in Geomagic or Polyworks. 2-8 photos were used for texture in Geomagic Wrap. The Sanak Island artifacts are presented as a result of research conducted under grants NSF 0326584, NSF 0508101, NSF 1139266, NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at GDH. Fieldwork and analysis done with permission and collaboration of the Pauloff Harbor Tribe and the Sanak Corporation. Source: Objaverse 1.0 / Sketchfab
Appendix for "Properties and Styles of Software Technology Tutorials"
<p>This artifact contains details of the resource collection, analysis scripts, and data analyzed in the paper "Properties and Styles of Software Technology Tutorials" by Deeksha M. Arya, Jin L.C. Guo, and Martin P. Robillard.</p>
FIGURE 3. Agapetes wardii var. heterotricha. A. Habit. B. Flowering branch. C. Opened corolla, abaxial view. D. Stamen, abaxial view. E. Calyx and style. From Ayeyarwady Expedition 1245 in New taxa of Agapetes (Ericaceae) from Myanmar
FIGURE 3. Agapetes wardii var. heterotricha. A. Habit. B. Flowering branch. C. Opened corolla, abaxial view. D. Stamen, abaxial view. E. Calyx and style. From Ayeyarwady Expedition 1245 (IBSC).
Fig. 3 in The style and substance of plant flavonoid decoration; towards defining both structure and function
Fig. 3. Natural diversity and ratio of total methylated, phenylacylated, glycosylated and hydroxylated flavonoid per family in land plants. Flavonoid entries found in KNApSAcK (http://kanaya.naist.jp/knapsack_jsp/top.html). (A) Land plant families found in KNApSAcK. (B) Natural diversity and ratio of total methylated, phenylacylated, glycosylated and hydroxylated flavonoid per family. (C) Total number of methylated, phenylacylated, glycosylated and hydroxylated -flavonoid in each decoration type.
Fig. 2 in The style and substance of plant flavonoid decoration; towards defining both structure and function
Fig. 2. Schematic overview of the flavonoid biosynthesis pathway in plants. Showing structures of major flavonoids and the positions of common decoration. Purple circles represent the common glycosylation positions and green circles represent the common methylation positions. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 in The style and substance of plant flavonoid decoration; towards defining both structure and function
Fig. 1. Structure of major flavonoid aglycones (A). Flavones (B), Flavonols (C), Flavanones (D), Flavanols (E), Anthocyanins (F) and Isoflavones (G).
The Classics Never Go Out of Style: An Empirical Study of Downgrades from the Bazel Build Technology
<p>This package contains the dataset used in our study: "The Classics Never Go Out of Style: An Empirical Study of Downgrades from the Bazel Build Technology."</p><p>For more information on understanding the folder structure, please read the <i>README</i>.md.</p>
The Problem of Translating Style in African Prose Writing
<p>This research investigated style as an elusive and difficult element to render in an African prose text. Using illustrations from Charles Tsimi’s Clandestinement votre, it identified elements of style in 15 randomly selected excerpts, highlighted possible constraints to the translation of style into English and proposed strategies that a translator could use in the event of its translation. The study applied Toury’s (1995) Descriptive Translation Studies (DTS) for qualitative data collection as it identified, described and explained pathways for the translatability of style in the corpus. The quantitative data collected for the study were analysed using both descriptive and inferential statistics. The descriptive statistical tools used were frequencies and percentages. The quantitative data were analysed using SPSS 25.0, and the findings were presented using figures and tables. The research was underpinned by both translation and literary theories. Concerning translation theory, it made use of the Sociolinguistic and Skopos Theories. The literary theories that supported the work were formalism, post-colonial criticism, sociological criticism and new historicism. The findings revealed that difficult-to-translate elements of style were found in the author’s diction (73.3%), voice (20.0%) and tone (6.7%). Regarding constraints, it was revealed that translators can face text-driven, translator-related, norm-imposed and extra-linguistic constraints in rendering African prose texts into English. Concerning macro translation strategies, the study proposed foreignisation (20%) and domestication (80%) for rendering style, while the micro strategies it identified were modulation (33.3%), literal translation (26.7), adaptation and equivalence, both of equal weights (13.3%) and deletion and transference also of equal proportions (6.7%). The study concluded that a successful translation of style would depend largely on the potential translator’s mastery of the source text culture, which will condition how they convey both its message (content) and the style (form).</p>
Rate-and-state friction parameters for "Frictional Characteristics of Oceanic Transform Faults: Progressive Deformation and Alteration Controls Seismic Style"
<p>Rate-and-state friction parameters to accompany "Frictional Characteristics of Oceanic Transform Faults: Progressive Deformation and Alteration Controls Seismic Style"</p>
How to cite & reference in IEEE style
<p>This short video shows how to cite and reference a research report in IEEE style, using style guide Cite Them Right.</p>
FIGURE. Camchaya bolavenensis Noyori, Komada, Soulad. & Tagane. A. Habit; B. Lower leaf surface; C. Capitula, lateral view; D. Capitula, apical view; E. Capitula; F. Floret; G. Anthers; H. Styles and stigmas; I. Hexaporate pollen. Materials A–E & G–H from Souladeth et al. L3349 (KAG), F from Tagane et al. L2011 (KYO) and I from Tagane et al. L2011 (KAG). in Camchaya bolavenensis (Asteraceae: Vernonieae), a new species from Bolaven Plateau, southern Laos
FIGURE. Camchaya bolavenensis Noyori, Komada, Soulad. & Tagane. A. Habit; B. Lower leaf surface; C. Capitula, lateral view; D. Capitula, apical view; E. Capitula; F. Floret; G. Anthers; H. Styles and stigmas; I. Hexaporate pollen. Materials A–E & G–H from Souladeth et al. L3349 (KAG), F from Tagane et al. L2011 (KYO) and I from Tagane et al. L2011 (KAG).
FIGURE 32. Doratura concors group. Right style, dorsal view. A, B in Revision of the genus Doratura Sahlberg (Hemiptera, Cicadellidae, Deltocephalinae) with particular regard to its distribution in Italy and description of four new species
FIGURE 32. Doratura concors group. Right style, dorsal view. A, B: D. concors Horváth. A: Russia, Altai, Čibit, Čuja; B: Montenegro, Nikšić, Vidrovan.—C–E: D. rusaevi Kusnezov. C: Kazakhstan, Karaganda, Zhana-Arka; D: Kazakhstan, Akmolinsk; E: Russia, Astrachan, Sör-Kata.—F, G: D. medvedevi Logvinenko. F: Russia (?), Caspian Sea coast. G: West-Kazakhstan, Saykhin.
FIGURE 11. Doratura stylata group. Right style, dorsal view. A–C in Revision of the genus Doratura Sahlberg (Hemiptera, Cicadellidae, Deltocephalinae) with particular regard to its distribution in Italy and description of four new species
FIGURE 11. Doratura stylata group. Right style, dorsal view. A–C: D. stylata (Boheman). A: Germany, Bayern, Memmingen; B: Mongolia, Bulgan, (MNHN)EH 23459; C: Spain, Aragón, Huesca, Ansó.—D: D. exilis Horváth. Germany, Baden-Württemberg, Gültlingen.—E: D. roesle sp.nov. Greece, Achaia, Kalavryta, Lousiko.—F–I: D. impudica Horváth. F: Bulgaria, Sofia, Beledie Han; G: Italy, Basilicata, Matera, Fiume Sinni; H: Germany, Mecklenburg-Vorpommern, Insel Poel; I: syntype D. ivanovi Kusnezov. Ukraine, Kiev.
FIGURE 38. Doratura homophyla group. Right style, dorsal view. A–D in Revision of the genus Doratura Sahlberg (Hemiptera, Cicadellidae, Deltocephalinae) with particular regard to its distribution in Italy and description of four new species
FIGURE 38. Doratura homophyla group. Right style, dorsal view. A–D: D. homophyla (Flor). A: Germany, Mecklenburg-Vorpommern, Insel Poel; B: Germany, Baden-Württemberg, Baden-Baden, Sandweier; C: Spain, Andalusia, Jaén, Cazorla; D: Irak, Bagdad.—E–G: D. caucasica Melichar. E: paratype D. arenicola Logvinenko. Azerbajan, Lenkoran, Talysh, 12.07.1970; F: paratype (?) D. arenicola Logvinenko. Azerbajan, Lenkoran, Alekseevka, 01.06.1967; G: Georgia, Tbilisi, Lac Lisi.
Supplementary material for "Modeling styles in conceptual data modeling: Reflecting observations in a series of multimodal studies'"
<p>This material supplements the following conference publication:</p> <p>Rosenthal, K., Wagner, S., Strecker, S. (2022) Modeling styles in conceptual data modeling: Reflecting observations in a series of multimodal studies</p>
FIGURE. Sanicula orthacantha in the wild (China, Jiangxi, Jiujiang, Lushan, the type locality of S. orthacantha). A. Habitat. B. Habit. C. Leaves (left: adaxial surface; right: abaxial surface). D. Portion of inflorescence (side view). E. Portion of inflorescence (top view). F. Involucrate bracts. G. Umbellule (side view), a) involucellate bracteoles, b) calyx teeth. H. Staminate flowers (side view). I. Fertile flower with fruit, style, petals and calyx teeth. J. Mericarps in Taxonomic studies on the genus Sanicula (Apiaceae) from China ( ): The clarification of some morphological distinction between S. orthacantha var. orthacantha and S. orthacantha var. brevispina, with the reduction of S. petagnioides to the synonymy of the former, and S. orthacantha var. stolonifera to
FIGURE. Sanicula orthacantha in the wild (China, Jiangxi, Jiujiang, Lushan, the type locality of S. orthacantha). A. Habitat. B. Habit. C. Leaves (left: adaxial surface; right: abaxial surface). D. Portion of inflorescence (side view). E. Portion of inflorescence (top view). F. Involucrate bracts. G. Umbellule (side view), a) involucellate bracteoles, b) calyx teeth. H. Staminate flowers (side view). I. Fertile flower with fruit, style, petals and calyx teeth. J. Mericarps
FIGURE. Sanicula orthacantha var. brevispina in the wild (China, Sichuan, Emei Shan, the type locality of S. orthacantha var. brevispina and S. orthacantha var. stolonifera). A. Habitat and habit. B. Rhizome. C. Leaves (left: adaxial surface; right: abaxial surface). D. Portion of inflorescence (side view). E. Portion of inflorescence (top view). F. Involucrate bracts. G. Umbellule (side view), a) involucellate bracteoles, b) calyx teeth. H. Staminate flowers (side view). I. Fertile flower with fruit, style, petals and calyx teeth. J. Mericarps. in Taxonomic studies on the genus Sanicula (Apiaceae) from China ( ): The clarification of some morphological distinction between S. orthacantha var. orthacantha and S. orthacantha var. brevispina, with the reduction of S. petagnioides to the synonymy of the former, and S. orthacantha var. stolonifera to
FIGURE. Sanicula orthacantha var. brevispina in the wild (China, Sichuan, Emei Shan, the type locality of S. orthacantha var. brevispina and S. orthacantha var. stolonifera). A. Habitat and habit. B. Rhizome. C. Leaves (left: adaxial surface; right: abaxial surface). D. Portion of inflorescence (side view). E. Portion of inflorescence (top view). F. Involucrate bracts. G. Umbellule (side view), a) involucellate bracteoles, b) calyx teeth. H. Staminate flowers (side view). I. Fertile flower with fruit, style, petals and calyx teeth. J. Mericarps.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.