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334 results for “accommodation”
Audio files referred to in Roettger, Timo B. (2017). Tonal Placement in Tashlhiyt - How an intonation system accommodates to adverse phonological environments.
<p>Audio files referred to in Roettger, Timo B. (2017). Tonal Placement in Tashlhiyt - How an intonation system accommodates to adverse phonological environments. Berlin: Language Science Press (DOI 10.5281/zenodo.814472)</p>
Dataset: Economical Accommodations for Neurodivergent Students in Software Engineering Education: Experiences from an Intervention in Four Undergraduate Courses
<p>This dataset contains anonymised raw data and examples of accommodations made for neurodiverse students in four undergraduate courses in Computer Science and Software Engineering programmes. The dataset is published as a part of a book chapter in which we report the accommodations.</p> <p>Overall guidelines we followed, including their sources, are contained in <strong>guidelines.md.</strong></p> <p>The raw data for the two surveys is contained in the two Excel files <strong>survey1.xlsx</strong> and <strong>survey2.xlsx</strong>. Free-text answers have been aggregated by neurodiverse and neurotypical students and anonymised, and are available in the files<strong> survey1_freetext_neurodiverse.txt, survey1_freetext_neurotypical.txt, survey2_freetext_neurodiverse.txt, </strong>and<strong> survey2_freetext_neurotypical.txt.</strong></p> <p>The remaining files are examples of the adapted lecture slides and assignment texts. Here, files starting with WEBcourse are from a mandatory undergraduate course on web development, while files starting with SEcourse are from a mandatory undergraduate course giving an overview of Software Engineering.</p>
Forearc faults in northern Cascadia do not accommodate elastic strain driven by the megathrust seismic cycle: Dataset
<p>Input files and codes for Harrichhausen, N., Morell, K.D., Regalla, C. Inner forearc faults in northern Cascadia do not accommodate elastic strain driven by the megathrust seismic cycle. Submitted to Seismica. 2024.</p> <p>See Readme.md for more information</p> <p>Version 1.1: Updated author list and funding information.</p> <p>Version 1.2: Updated matlab codes to work on Mac.</p>
Accommodation Facilities and Ratings on Booking for 10 European Cities
<p>This dataset, collected on 11/11/2024, includes data from 4,806 accommodations across 10 European cities: Barcelona, Reykjavík, Amsterdam, Prague, Sofia, Porto, Edinburgh, Berlin, Dubrovnik, and Innsbruck. With prices corresponding to the 16/07/2025 night (2 adults and 1 room), it features global ratings, and category scores like cleanliness, comfort, staff, and location, along with details on available amenities and accommodation types. The dataset also covers check-in/check-out policies, pet policies, exact addresses, and review counts. It is designed to analyze key factors to a positive accommodation experience, and it allows comparisons across cities and types of accommodations.</p>
FIGURE 4 in A new viviparous species of asterinid (Echinodermata, Asteroidea, Asterinidae) and a new genus to accommodate the species of pantropical exiguoid sea stars
FIGURE 4. Aboral view of the gonads of C. hystera n. sp. filled with late stage juveniles just prior to leaving the parent, Juveniles about 500 µ m.
FIGURE 3. a in A new viviparous species of asterinid (Echinodermata, Asteroidea, Asterinidae) and a new genus to accommodate the species of pantropical exiguoid sea stars
FIGURE 3. a) Colour in life Cryptasterina hystera n. sp. (at left) and Cryptasterina pentagona (at right) Photograph. M Byrne. b) Statue Bay, central Queensland. Boulder and cobble beach. Type locality for C. hystera n. sp. Photograph. S McKillup.
FIGURE 2 in A new viviparous species of asterinid (Echinodermata, Asteroidea, Asterinidae) and a new genus to accommodate the species of pantropical exiguoid sea stars
FIGURE 2. Abactinal surface of holotype of Cryptasterina hystera sp. nov. (R = 10.2 mm) Emergent young visible in the interradius to left of image.
Operating diagram of hatching module, this module consists of two clearly separated sections, each consisting of two long tanks (2 × 0.2 × 0.2 m) designed to accommodate hatching boxes, a filtration tank and an independent water circulation pump with a cooling unit and UV sterilizer. This allows simultaneous monitoring of 16 batches of eggs. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of hatching module, this module consists of two clearly separated sections, each consisting of two long tanks (2 × 0.2 × 0.2 m) designed to accommodate hatching boxes, a filtration tank and an independent water circulation pump with a cooling unit and UV sterilizer. This allows simultaneous monitoring of 16 batches of eggs.
Operating diagram of hatching module in Zoug jars, this system consists of a 300-litre temperature-controlled isothermal enclosure containing 10 one-litre Zoug jars, each able to accommodate several hundred eggs. An ascending current holds the eggs in suspension and carries the larvae to the surface. Another bottle connected to this device collects the larvae. The water circulating in the jars is independent of that used in the filtration circuit. A cooling unit and UV sterilizer complete the installation. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of hatching module in Zoug jars, this system consists of a 300-litre temperature-controlled isothermal enclosure containing 10 one-litre Zoug jars, each able to accommodate several hundred eggs. An ascending current holds the eggs in suspension and carries the larvae to the surface. Another bottle connected to this device collects the larvae. The water circulating in the jars is independent of that used in the filtration circuit. A cooling unit and UV sterilizer complete the installation.
Top view of DR1/DR2 double riffle, each section contains a spawning ground made up of eight gravel-filled trays, a rest area. The "double riffle" was designed to accommodate two groups from 25 to 50 specimens of broodstock in strictly identical conditions. The spawning grounds are equipped with waterproof, motion-sensing cameras with infrared night vision, connected to a 1000 Gb recorder. The diurnal and nocturnal activities of the two groups can therefore be simultaneously recorded over a long period. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Top view of DR1/DR2 double riffle, each section contains a spawning ground made up of eight gravel-filled trays, a rest area. The "double riffle" was designed to accommodate two groups from 25 to 50 specimens of broodstock in strictly identical conditions. The spawning grounds are equipped with waterproof, motion-sensing cameras with infrared night vision, connected to a 1000 Gb recorder. The diurnal and nocturnal activities of the two groups can therefore be simultaneously recorded over a long period.
Private Homestay Accommodation (2022)
<p>Data was collected from hosts of Ukrainian migrants in Germany in collaboration with the organization #UnterkunftUkraine. </p>
Fig. 9 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 9. Cranial osteometric characters of common hoopoe Upupa epops; (A) illustrate the ratio ofwidth of brain case, temporal fossa and Frontal region; (B, E, F) illustrate the ratio between the bony elements of lower jaw and its mandibular symphysis; (c, d) illustrate the ratio between the bony elements of upper jaw. Abbreviations: W.Bc, Width of Brain Case; W.Ft, Width of Temporal Fossa; W.F, Width of Frontal; L.Lj, Length of Lower Jaw; D.Sym.L.J, Dorsal Mandibular Symphasis; V.Sym.L.J, Ventral Mandibular Symphasis; L.Uj, Length of Upper Jaw; L.N, Length of Nasal Bone; Cn, Length of Nasal Cavity; Art, Length of Articular; RA, length of Rearticular process. Means in mm, N = 10.
Fig. 8 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 8. Cranial osteometric characters of common hoopoe Upupa epops illustrate the ratio between the total length of skull, brain case and other bony elements of studied species. Abbreviations: L.skull, Length of Skull; L.Lj, Length of Lower Jaw; L.Uj, Length of Upper Jaw; L.J, Length of Jugal Bar; L.Bc, Length of Brain Case; L.Ft, Length of temporal Fossa; L.Z, Length of Zygomatic Process; Po, Length of Postorbital Process; L.Pt, Length of Pterygoid; L.F, Length of Frontal. Means in mm, N = 10.
Fig. 2 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 2. Lateral view of the skull and mandible of common hoopoe Upupa ep; A, B — shows the temporal region and their crests; superior temporal crest (arrow) and anterior temporal crest (double arrows); C — hotomacrograph of the lateral surface of skull of common hoopoe stained with Alizarin red stain showing presence of great air spaces within temporal region (pneumatization) (arrow) and postorbital ligament (arrowhead). Scale bar 5 mm. See the list of anatomical abbreviations.
Fig. 1. A, B in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 1. A, B — lateral view, C — dorsal view of the skull and mandible of common hoopoe Upupa epops illustrating the bony elements and some osteometric measurements were taken in this study. In addition B, C — shows nasofrontal flexion zone (double arrows) and naso-lacrimal suture (arrow); D — photomacrograph of the dorsal surface of mandible of common hoopoe illustrate the different forces (compression and tension) resulting during contraction of pterygoideus muscle (Fpt). Scale bar 5 mm. See the list of anatomical abbreviations.
Fig. 5 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 5. Scanning electromicrograph of the skull of common hoopoe Upupa epops showing different positions of flexion zones between bony elements of brain case and upper jaw; Nasofrontal zone (double arrows), nasolacrimal zone (arrow) and third flexion zone (arrow head) which appears between the upper jaw (Uj) and Jugal bar (J).). Scale bar 1 mm, 500 mm. See the list of anatomical abbreviations.
Fig. 7 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 7. Posterior portion of the mandible of common hoopoe Upupa epops (A, C — dorsal view, B, D — ventral view) illustrating the shape of their cotylae and processes. Scale bar 5 mm. See the list of anatomical abbreviation.
Fig. 4 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 4. Ventral view of the skull of common hoopoe Upupa epops: A, B — shows location of the jaw ligamentous system; C, D — photomacrograph of the lateral surface of skull and mandible of common hoopoe stained with Alizarin red stain showing small oval sesamoid bone (arrowhead) appears within Lig. Jugomandibualaris medialis (Lig. Jml) and other sesamoid bones are observed within the tendon of adductor muscle (arrow). Scale bar 5 mm. See the list of anatomical abbreviations.
Fig. 3 in Functional Significance Of Anatomical Accommodation In The Skull Of Common Hoopoe, Upupa Epops (Bucerotiforme Upupidae)
Fig. 3. Ventral view of the skull of common hoopoe Upupa epops: A, B — shows bony elements of floor of brain case beside reveal the articulation site between pterygoid with palate bone (double arrows) and pterygoid with quadrate (black arrow), and appearance of rudiment of aponeurosis of M. pterygoideus (white arrow) which connected tightly with lateral crest of palate; C — photomacrograph of the ventral surface of skull of common hoopoe stained with Alizarin red stain showing the ventral fossa of pars lateralis (Fv) gives faint red color while dense red color appear on the lateral crest of palate (Lc). Scale bar 5 mm. See the list of anatomical abbreviations.
Dataset for "Articulatory, Acoustic, and Prosodic Accommodation in a Cooperative Maze Task"
<p>This dataset accompanies the article "Articulatory, Acoustic, and Prosodic Accommodation in a Cooperative Maze Task" in the journal <em>PLoS ONE</em>. A guide to the dataset, with information about how the data is organized, is also available within the repository.</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
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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.