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107 results for “Archetype”
Data Sources for Archetype-based Energy and Material Use Estimation for the Residential Buildings in Arab Gulf Countries
<p><strong>Dataset Name:</strong><br> <em>Literature Data and Archetype Parameter Sheets for the publication, named Archetype-based Energy and Material Use Estimation for the Residential Buildings in Arab Gulf Countries</em>.</p> <p><strong>Description:</strong><br> This dataset includes Excel sheets containing literature sources and archetypal data on GCC countries' residential dwelling typologies.</p> <p><strong>Files:</strong><br> The following files are included in the dataset:</p> <ul> <li> <em>[CountryName]_LiteratureSources.xlsx:</em> Excel sheet containing literature sources and references,</li> <li> <em>[CountryName]_ArchetypeParameters.xlsx</em>: Archetype models' semantic, geometric, and technical data used in the generation of energy models,</li> <li> <em>[CountryName]_Schedules.xlsx:</em> Excel sheet containing the operation schedules for countries. The sheet is compiled from literature sources and reorganized by expert consensus and given in Designbuilder input format,</li> <li> <em>[CountryName]_Stock.xlsx:</em> Excel sheet containing additional data on the building stock,</li> <li><em> VacantHouses.xlsx</em>: Vacant house rates for the countries, the found articles on the web, literature sources, etc.,</li> </ul> <p><strong>Usage:</strong><br> The dataset is intended for researching and analyzing the GCC countries' residential buildings. The literature sources included in the [CountryName]_LiteratureSources.xlsx and [CountryName]_ArchetypeParameters.xlsx files can be used to verify, support, or reproduce the research findings.</p> <p><strong>License:</strong><br> The dataset is licensed under Creative Commons Attribution 4.0 International.</p> <p><strong>Citation:</strong><br> If you use this dataset in your research, please cite it as follows and contact the corresponding author:</p> <p>Akin, Sahin, Chibuikem Chrysogonus Nwagwu, Niko Heeren, and Edgar Hertwich. 2023. “Archetype-Based Energy and Material Use Estimation for the Residential Buildings in Arab Gulf Countries.” Energy and Buildings 298: 113537. https://doi.org/https://doi.org/10.1016/j.enbuild.2023.113537.</p> <p><strong>Contact:</strong><br> The archetypes' energy models (DesignBuilder or IDF files) can be provided on request. If you have any questions or comments about the dataset, please contact <strong>sahin.akin@ntnu.no, the corresponding author.</strong></p>
Parallel generation of extensive vascular networks with application to an archetypal human kidney model
Open the record for dataset details and reuse information.
POM of 2326 archetypes in Maven central repository
<p>This dataset contains <em>pom.xml </em>files of 2326 archetypes in Maven central repository.</p> <p>The format of file name of each <em>pom.xml</em> is "<groupId>=<artifactId>=<version>=<orginal file name>", where "." in groupId is replace as "=".</p> <p>For example, the file name "am=ik=archetype=spring-boot-blank-archetype=0.9.0=spring-boot-blank-archetype-0.9.0.pom" represents: </p> <ul> <li>groupId: am.ik.archetype</li> <li>artifactId: spring-boot-blank-archetype</li> <li>version: 0.9.0</li> <li>pom.xml original filename: spring-boot-blank-archetype-0.9.0.pom</li> </ul> <p> </p>
Model America - Arizona extract from ORNL's AutoBEM - (Archetypes with simulation results)
<p>Oak Ridge National Laboratory (ORNL) has developed the Automatic Building Energy Modeling (AutoBEM) software suite to process multiple types of data, extract building-specific descriptors, generate building energy models, and simulate them on High Performance Computing (HPC) resources. For more information, see AutoBEM-related publications (<a href="https://bit.ly/AutoBEM">bit.ly/AutoBEM</a>).</p> <p>Two sets of data are provided for 2,555,153 buildings located within the boundary of Arizona in the United States:</p> <ol> <li><strong>Data (420KB *.csv) - Arizona 527 building archetypes based on different Climate Zones (2B-136, 3B-133, 4B-128, 5B-130) with simulation results.</strong></li> <li><strong>Models (38.8MB *.zip by Climate Zone) – OpenStudio and EnergyPlus building energy models named according to ID.</strong></li> </ol> <p> </p> <p>This data is made free and openly available in hopes of stimulating any simulation-informed use case. Data is provided as-is with no warranties, express or implied, regarding fitness for a particular purpose. We wish to thank our sponsors which include Oak Ridge National Laboratory (ORNL), U.S. Dept. of Energy’s (DOE) Building Technologies Office (BTO), Office of Electricity (OE), and Biological and Environmental Research (BER).</p>
Trait values of European tetrapods archetypes
<p>This dataset contains trait values used to identify archetype groups among European tetrapods. The<span><span> file </span><span>includes</span><span> 8 data sheets, one for each homogeneous group of </span><span>tetrapods and one sheet about references</span><span>.</span></span><span> </span></p>
Figure 27 in A salticid archetype for salticid spiders
Figure 27. Faces. We readily recognize salticids by the presence of a row of large anterior eyes (1-2), but also respond to the faces of our primate relatives (3-6). Facial expressions of primates are versatile, but salticids may also communicate through positions and movement of pedipalps and chelicerae, sometimes concealing the latter with the former. Attribution and ©: 1, mika mamy; 2, Ronny Overhate; 3, Pete Linforth; 4-6, David E. Hill.
Figure 23 in A salticid archetype for salticid spiders
Figure 23. Pelochrista scintillana. Pelocrista is a large Holarctic genus of tortricid moths with at least 226 described species, most in the United States, but only a few display the hypothetical salticid archetype on their forewings (Gilligan & Wright 2013; Wright & Gilligan 2017). P. scintillana was found in a survey of prairie habitat in Iowa, but it appears that little is known of their biology (Schmitt & Larsen 2021). Attribution and ©: 1, phytographer; 2, 16, Steven Mlodinow; 3, Lena Zappia; 4, cranetrust; 23.5, Zach Dufran; 6, 14, Jack Cochran; 7-8, Ken-ichi Ueda; 9, 13, John Morgan; 10, 15, Chrissy McClarren and Andy Reago; 11, Karl Kroeker; 12, Mark A. Brogie; 17, Chuck Sexton; 18, Ken Lebo.
Figure 22. Chalcoela iphitalis and C in A salticid archetype for salticid spiders
Figure 22. Chalcoela iphitalis and C. pegasalis. Members of this genus parasitize the broods of social wasps, laying their eggs at night (Whiteman & Landwer 2000; Nacko & Henderson 2017; Sourakov 2022). These are the only two species of the genus known from North America (Scholtens & Solis 2015). In a resting position they display a horizontal eye row along the rear margin of each hindwings, and a white "clypeus" line below this eye row in C. pegasalis. Otherwise the relationship of their appearance to the hypothetical salticid archetype is less convincing to the human observer. Attribution and ©: 1-2, Susan Elliot; 3, edporopat; 4, joannerusso; 5, Kristi DuBois; 6, Monica Krancevic; 7, John Morgan; 8, Blue Wing; 9, Christian Schwartz; 10, Vitaly Charny; 11-12, Rose A. Payne.
Figure 18 in A salticid archetype for salticid spiders
Figure 18. Three Australian Margarosticha. Attribution and ©: 1-3, Victor W. Fazio III; 4, kerrycoleman; 5, John Lenagan; 6, dddwebbb; 7-8, Ian McMillan; 9, Patrick De Geest.
Figure 15 in A salticid archetype for salticid spiders
Figure 15. Eoophyla conjunctalis. Eoophyla is a large crambid genus in Afrotropical, Oriental, and Australasian regions, with some 50 described species in the Orient (Speidel, Mey & Schultze 2002), with aquatic larvae that build nests in rapidly flowing streams (Burnhill 2006). Attribution and ©: 1, John Ibis; 2, Gc Chan; 3, Young Chan; 4, 6, 11, max822 (Ễ š ŝ); 5, 7, stevenson1002 (flẓṱ); 8, blackdogto; 9, sk2; 10, 12, Takaaki Hattori.
Figure 26 in A salticid archetype for salticid spiders
Figure 26. Glyphipteryx species. Glyphipteryx is a large, cosmopolitan genus of sedge moths with at least 283 named species, many with metallic scale patterns (TakaNcs & SzaboNky 2018). Although many have some of the features of the hypothetical salticid archetype (e.g, 7-12), a complete and quite impressive set of these features can be found in only a few species (e.g, 1-6). Attribution and ©: 1-2, Eric Carpenter; 3, Justin Williams; 4, Ben Hutchins; 5, Ken-ichi Ueda; 6, Kerry-Lee Harris; 7, Arnold Wijker; 8, Marie Lou Legrand; 9, Arno Beidts; 10, Roman Providukhin; 11, Woolcarderbee; 12, ronigreer.
Figure 14. Chrysendeton medicinalis. Some 20 in A salticid archetype for salticid spiders
Figure 14. Chrysendeton medicinalis. Some 20 species in this genus of aquatic crambids have been described from the Americas (Heppner 1991). Attribution and ©: 1, Joan Costanza; 2, Amber king; 3-4, lisnel; 5, Jessee J. smith; 6, 9, 12, Erik Johnson; 7, John Morgan; 8, Alex Bowen; 10, Vitaly Charny; 11, Marcia Morris; 13, Don Marseille.
Figure 12 in A salticid archetype for salticid spiders
Figure 12. Three Petrophila species. Attribution and ©: 1, Andrew Meeds; 2, Andrew Hebert; 3-4, dlbowls; 5, Greg Lasley; 6, sehnature; 7, Juan Loredo; 8, David G. Barker; 9, Eric Carpenter.
Figure 8. Southwestern Cyllopsis pyracmon and three other Cyllopsis species. C. pyracmon has two forms, a in A salticid archetype for salticid spiders
Figure 8. Southwestern Cyllopsis pyracmon and three other Cyllopsis species. C. pyracmon has two forms, a darker spring form (1-2) and a lighter fall form (3-6), although some individuals may be intermediate. The tropical species shown here (7, 9) have a less pronounced salticid image on each hindwing, but retain the large eyes. Along with Neonympha (Figure 9), these are members of a very large, mostly Neotropical, clade of butterflies with ocelli on the margins of the wings (Euptychiina; MarÍNn et al. 2019). Attribution and ©: 1, Pierre Deviche; 2, tomoclark; 3, Dianna-Terry Hibbitts; 4, Greg Lasley; 5, 7 Roger Rittmaster; 6, James A. Giroux; 8, Mark and Holly Salvato; 9, Bodo NunSez Oberg.
Figure 7 in A salticid archetype for salticid spiders
Figure 7. Southeastern Cyllopsis gemma and its southwestern relative, C. pyracmon. Attribution and ©: 1, nitinr; 2, Sean Werle; 3, funnystuff2495; 4, John Rosford; 5, Joe (jhousephotos); 6, Brian Ahern; 7, ronthill; 8, Ethan (ethan-k); 9, Gregory Greene.
Figure 21 in A salticid archetype for salticid spiders
Figure 21. Euchromius ocellea. This cosmopolitan species is apparently migratory, with little variation in appearance between populations (Schouten 1992). Attribution and ©: 1, 4, 20, Chuck Sexton; 2, Ken-ichi Ueda; 3, 21, Monica Krancevic; 5, Diana- Terry Hibbitts; 6-7, Sam Kieschnick; 8, Cosimo Costanzia di Costgliole; 9, 16-17, Jack Cochran; 10, 12, Jon McIntyre; 11, C. McClarren and A. Reago; 13, Justin Williams; 14, Dusty; 15, Gary Nunn; 18, Ellen Hildebrandt; 19, A Rector.
Figure 6 in A salticid archetype for salticid spiders
Figure 6. Cyllopsis gemma. These small satyrs live on plants in the understory of the great deciduous forest in southeastern North America, almost always resting with their wings closed as shown here. Larger and perhaps relevant salticid predators that frequent this habitat include Colonus sylvanus, several species of Phidippus, and Platycryptus undatus. Colors vary but the image of an archetypal salticid on the ventral margin of each hindwing is fairly consistent and sometimes (1) remarkably detailed. The most recent revision of the genus Cyllopsis (Miller 1974) referred to the characteristic presence of submarginal ocelli or hindwing maculation in a grey patch, but no mention of the relationship of these patterns to salticid spiders. However, Warren et. al (2018) reported that these markings, also found in a new species from Chiapas (C. tomemmeli) strongly suggest mimicry of jumping spiders. Their larvae feed on grasses in the woodland, and there are multiple broods each year (Edwards 1868-1897; Miller 1974; Warren et al. 2018). Attribution and ©: 1, Judy Gallagher; 2, Vitaly Charny; 3, John Davis; 4, Roger Rittmaster; 5, Will Stuart; 6, Kerry Givens; 7, Robb Van Epps; 8, John Rosford; 9, Robby Deans.
Figure 17 in A salticid archetype for salticid spiders
Figure 17. Margarosticha euprepialis. Like the other Acentropinae, these crambids have aquatic larvae. They can be found in wet habitats at lower elevations in tropical to subtropical Australia (Habeck & Balciunas 2005; Kitching et al. 2020). Attribution and ©: 1, Steve and Alison Pearson, Airlie Beach; 2-5, Ian McMillan; 6-8, Victor W. Fazio III; 9, David Mules.
Figure 5 in A salticid archetype for salticid spiders
Figure 5. Some moths of the genus Brenthia that are thought to mimic salticids. Field observations and laboratory experiments have shown that salticids are distracted by these displays, which include active movement across the surface of a leaf (Robinson et al. 1994; Aiello & Becker 2004; Rota & Wagner 2006; Rota 2008; Wang et al. 2017). Although the crouched legs images are fairly consistent in these species, the accuracy of the horizontal eye row image varies, and the elevated forewings appear in some cases to represent two salticids, side by side. These images may have a supernormal (see Tanaka et al. 2011; Goodwin, Browne and Rockloff 2015; Kral 2016; Vidya 2018; Outomuro et al. 2020) effect on a salticid predator. Brenthia larvae feed on the surfaces of leaves (Rota 2008). Attribution and ©: 1, Thomas Shahan; 2, chipperatl; 3, Shanelle Wikramanayake; 4, Felix Fleck; 5, HerveNGalliffet; 6, Frank Thomas Sautter; 7, Soh Kam Yung; 8-9, Roman Prokorov; 10, Ketan Anklesaria; 11, Native HK; 12, Yuwaraj Gurjar.
Figure 2 in A salticid archetype for salticid spiders
Figure 2. Some of the many, diverse faces of jumping spiders (Salticidae). Attribution and ©: 1, Naveen Iyer; 2, 4-5, 7, 9-12, Thomas Shahan; 6, Jacky Lien; 8, acharya_mr. Names follow the WSC (2022).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.