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1,298 results for “Archive”
Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 31 August 2016
<p>Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 31 August 2016</p>
Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 15 July 2016
<p>Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 15 July 2016</p>
Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 11 August 2011
<p>Open Language Archive Community (OLAC) Nightly Data Dump (XML) from 11 August 2011</p>
Samoan Passage CTD/LADCP Data Archive
<p>Samoan Passage CTD/LADCP Data Archive. Please note that the copy here on zenodo contains only the GitHub repository, data are stored elsewhere.</p> <p>Head to <a href="https://github.com/gunnarvoet/sp-data-archive-ctd">https://github.com/gunnarvoet/sp-data-archive-ctd</a> for instructions on how to clone the full dataset or download data files manually at <a href="https://osf.io/up5j4/">https://osf.io/up5j4/</a>.</p>
Europresse #2 Explorer les archives
<p>Cette vidéo explique comment explorer les archives d'Europresse. Elle a été réalisée par le groupe de travail "Tutoriel" de ULiège Library et déposée sur Youtube le 30 juin 2021 : <a href="https://youtu.be/SoP3UJKhoHE">https://youtu.be/SoP3UJKhoHE</a></p> <p>Elle s’accompagne de deux fichiers adjuvants qui ont pour but d’expliquer et de partager les méthodes de travail du groupe dans sa création de ressources éducatives libres, à savoir : </p> <ul> <li> <p>le script de la vidéo accompagné d’informations technico-pédagogiques en vis-à-vis (pour l’enregistrement studio de la ressource)</p> </li> <li> <p>la taxonomie des rôles et contributions utilisée pour créditer les différentes personnes ayant participé à la création de cette ressource (adapté de la taxonomie <a href="https://casrai.org/credit/">CRediT</a> (Contributor Roles Taxonomy) pour nos besoins. </p> </li> </ul> <p>Le premier tutoriel Europresse est disponible ici :</p> <p><a href="https://doi.org/10.5281/zenodo.7096745">Europresse #1 Consulter des titres d'actualité</a></p>
ARCHIVE TATEISHI 2
再開発のため取り壊されることが決まっている、葛飾区立石駅北口の「呑んべ横丁」を中心とするエリア。 この昔ながらの街並みを後世に遺すため、ARCHIVE TATEISHI プロジェクトとして、現存する写真から3Dデータとしてアーカイブする取り組みを行なっています。 皆様の力で集まった写真から、バーチャル空間上に立石の街を復元したいと考えています。 「ARCHIVETATEISHI」 のハッシュタグを付けて、現在や昔の写真をTwitterやInstagram等で投稿下さい。 Source: Objaverse 1.0 / Sketchfab
Species Photos.zip Archive of fish species images for the publication of: Starck, W.A., Estapé C.J. & Morgan Estapé, A. (2017) The fishes of Alligator Reef and environs in the Florida Keys: a half-century update. Journal of the Ocean Science Foundation, 27, 74–117.
<p>Species Photos.zip </p> <p>Archive of fish species images for the publication of:</p> <p>Starck, W.A., Estapé C.J. & Morgan Estapé, A. (2017) The fishes of Alligator Reef and environs in the Florida Keys: a half-century update. Journal of the Ocean Science Foundation, 27, 74–117.</p> <p>323 images, 318 species total,(5 species of Pomacentridae have pictures of both juvenile and adult phases)</p> <p>Carcharodon carcharias screen grab from video*<br> Centropristis ocyurus photo by C.Wangen<br> Dasyatis centroura screen grab from video by Ed. Martin<br> Diapterus sp. photo by Ed Martin. </p> <p>All other photos taken by Carlos Estapé and Allison Estapé in the study area (319 images of 314 species)</p> <p>*YouTube video - Snorkelers Spot Great White Shark Off Islamorada, https://www.youtube.com/watch?v=50l2grfaNQ4</p>
GRAIL Crustal Thickness Archive
<p>This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And Interior Laboratory) gravity. The original crustal thickness data were published in map form in <em>Wieczorek et al. </em>(2013).</p> <p>Wieczorek, M. A., G. A. Neumann, F. Nimmo, W. S. Kiefer, G. J. Taylor, H. J. Melosh, R. J. Phillips, S. C. Solomon, J. C. Andrews-Hanna, S. W. Asmar, A. S. Konopliv, F. G. Lemoine, D. E. Smith, M. M. Watkins, J. G. Williams, M. T. Zuber, The crust of the Moon as seen by GRAIL, <em>Science</em>, <strong>339</strong>, 671-675, doi:10.1126/science.1231530, 2013.</p>
Data Archive from the MX3D Bridge in Amsterdam
<h1><strong>Data Archive from the MX3D Bridge in Amsterdam</strong></h1> <p>This DOI refers to the data collected from the <a href="https://www.thefabricator.com/thefabricator/article/additive/testing-the-worlds-first-3d-printed-metal-bridge">3d-printed bridge from MX3D in Amsterdam</a> from ~June 2021 – 6th July 2023. Contained within this DOI is a set of metadata that outlines the specifics of the sensors that were used to collect the data.</p> <h2><strong>Breakdown of (zipped) directory structure</strong></h2> <ol> <li> <p><strong>"Calibration_Info" Folder</strong>: This directory includes the manufacturer's sensor datasheets and houses two subdirectories:</p> <ul> <li>"CXTA01-T" and "CXL04GP3-R-AL", each containing calibration factor files specific to inclinometers and accelerometers, respectively.</li> </ul> </li> <li> <p><strong>"26102020 MX3D Bridge Sensor System" Spreadsheet (.xlsx)</strong>: This spreadsheet enumerates the sensors, cataloging critical details such as measurement direction, location, and associated data modules.</p> </li> <li> <p><strong>"Sensor Layout" PDF (.pdf)</strong>: A document depicting the layout of sensors on the MX3D bridge, with "North" and "South" annotations pertaining to the bridge's orientation in Amsterdam.</p> </li> <li> <p><strong>"Sensor Layout with Surroundings" PDF (.pdf)</strong>: An enhanced version of the Sensor Layout document, this PDF includes additional annotations regarding the surrounding bars to provide context to the sensor locations.</p> </li> </ol>
Figures. Exploring the Archived Web in a Highly Transformative Age. Proceedings. dir. S.Gebeil & J.-C. Peyssard
<p>Given recent global crises, the imperative to preserve and analyze online content has never been more vital to enhancing our comprehension of contemporary changes. This book, the outcome of an 5th international RESAW conference that convened experts from 50 disciplines across 17 countries in Marseille in June 2023, tackles the multifaceted challenges of web archiving. It underscores the dual roles of web archiving, as a cultural heritage and as essential source material for researchers delving into contemporary events and the evolution of digital culture. Through 20 chapters, it explores the development of web archiving and examines how technical, cultural, geopolitical, societal and environmental shifts impact its conception, study and dissemination. </p> <p> </p>
Data archive for: Chain forming diatoms use different strategies to avoid diffusion limited N assimilation
<p>Data archive for: “Chain forming diatoms use different strategies to avoid diffusion limited N assimilation” published in <em><strong>Limnology and Oceanography (L&O), <a href="https://doi.org/10.1002/lno.12677">https://doi.org/10.1002/lno.12677</a></strong></em>.</p> <p> </p> <p>Dataset of single cell assimilation of DIC and NO<sub>3</sub><sup>-</sup> by <em>Skeletonema marinoi</em> in the exponential and stationary growth phase captured using secondary ion mass spectrometry (SIMS) and stable isotopic tracers. The data set contains the data used in the study and the outliers excluded from further analysis.</p> <p> </p> <p>Two strains (Strain 1 and Strain 2) were incubated during either the exponential or stationary growth phase over 24h with <sup>15</sup>N enriched NO<sub>3</sub><sup>-</sup> and <sup>13</sup>C enriched DIC. The cell specific DIC and NO<sub>3</sub><sup>-</sup> assimilation was measured using SIMS.</p> <p>See the main manuscript for a extensive experimental setup and more details.</p> <p><strong>Each file is uploaded as both a .CSV and .XLSX, so that you can choose which you prefer.</strong></p> <p> </p> <p><strong>Row description:</strong></p> <p>Each row represents one <em>Skeletonema marinoi cell</em>.</p> <p><strong>Column description: </strong></p> <p><em>Single.cell:</em> if the cell was a solitary cell (y) or not (n)</p> <p><em>End.cell:</em> if the cell was located at the end of a chain (y) or not (n)</p> <p><em>Chain_position:</em> a number assigned to identify every cell in a chain starting with 1 at one end of the chain</p> <p><em>Chain_length_numeric:</em> the total number of cells in the chain</p> <p><em>Chain_length_max_6: </em>the total number of cell in the chain, all numbers larger than 6 are pooled together and labelled >6</p> <p><em>Two_chain:</em> if the cell was in a chain consisting of only 2 cells (y) or not (n)</p> <p><em>Cell_information:</em> whether the cell was a solitary cell (Single cell), found in a two cell chain (Two cell chain), found at the end of a chain longer than 2 cell (End cell), or in the middle of a chain longer than 3 cells (Middle cell).</p> <p><em>Chain:</em> a identifying number assigned to differentiate the different chains</p> <p><em>C_fmol_per_cell_day:</em> DIC assimilated in fmol cell<sup>-1</sup> day<sup>-1</sup></p> <p><em>N_fmol_per_cell_day:</em> NO<sub>3</sub><sup>-</sup> assimilated in fmol cell<sup>-1</sup> day<sup>-1</sup></p> <p> </p> <p> </p>
Archive of the microtremor data used in Cho and Nakazawa 2024
<p>This archive includes microtremor data and the analysis results used in "Shallow microtremor survey using miniature and small arrays: Strategy for efficient and feasible dense survey" by Ikuo Cho and Tsutomu Nakazawa (2024, Earth and Space Science). </p>
Data archive for paper "Energy and environmental impacts of air-to-air heat pumps in a mid-latitude city"
<p><strong>Overview</strong></p> <p>This is the data archive for paper "<a href="https://www.nature.com/articles/s41467-024-49836-3" target="_blank" rel="noopener">Energy and environmental impacts of air-to-air heat pumps in a mid-latitude city</a>". It contains the paper's data archive with model outputs (see <code>notebooks</code> folder) and the Singularity image for (optionally) re-running experiments.</p> <p>For the standalone models to model air conditioners and heat pumps please refer to <a href="https://github.com/dmey/minimal-dx">MinimalDX</a>.</p> <p><strong>Prerequisites</strong></p> <ul> <li>Linux with Bash shell.</li> <li><a>Git</a> version >= 2.</li> <li><a href="https://sylabs.io/">Singularity</a> version >= 3.</li> <li><a href="https://en.wikipedia.org/wiki/Portable_Batch_System">Portable Batch System</a>*.</li> <li><a href="https://en.wikipedia.org/wiki/Intel_Fortran_Compiler">Intel Fortran Compiler</a> [<em>Required for MesoNH simulations</em>].</li> <li>A compatible version of the MPI library implementation version 3 [<em>Required for MesoNH simulations</em>].</li> </ul> <p>Please note that most steps require <a href="https://sylabs.io/">Singularity</a>. If you are looking for information on how to install or use Singularity, please refer to the <a href="https://sylabs.io/docs">Singularity documentation</a>. Please note that depending on your specific system settings and resource availability, you may need to modify PBS parameters at the top of submit scripts stored in the hpc directory.</p> <p><strong>Simulations</strong></p> <p><em><strong>Offline</strong></em></p> <ol> <li>Build Surfex with <code>qsub hpc/surfex_build.pbs</code>.</li> <li>Run scenarios with the following commands: <pre><code> qsub -v case_name=fincap hpc/surfex_run.pbs qsub -v case_name=fincap_extended_autosize hpc/surfex_run.pbs qsub -v case_name=minidx_cop=2.5 hpc/surfex_run.pbs qsub -v case_name=minidx_cop=3.0 hpc/surfex_run.pbs qsub -v case_name=minidx_cop=3.5 hpc/surfex_run.pbs qsub -v case_name=minidx_cop=4.0 hpc/surfex_run.pbs<br> qsub -v case_name=minidx_cop=4.5 hpc/surfex_run.pbs </code></pre> </li> </ol> <p><em><strong>Online</strong></em></p> <p>To run MesoNH simulations, follow the three steps outlined below in the same order. Note: Depending on your system and configuration, submit scripts may require change.</p> <ol> <li>Build MesoNH with <code>qsub hpc/build_mnh_intel.pbs</code>.</li> <li>Run the preprocessing step with <code>qsub hpc/submit_mnh_prep.pbs</code>.</li> <li>Finally run MesoNH cases with the following commands for <code>fincap</code> and <code>minidx</code> simulations respectively: <pre><code> hpc/submit_mnh.sh fincap 20050120 12 1 toulouse hpc/submit_mnh.sh minidx 20050120 12 1 toulouse </code></pre> </li> <li>Post-process the results with <code>qsub hpc/submit_mnh_post.pbs</code></li> </ol> <p><strong>Analyses</strong></p> <pre><code>qsub hpc/postprocess_results.pbs # Plots in notebooks/ </code></pre>
Archived - Specific chronic conditions: Medicare beneficiary enrollment and characteristics
<h1>Chronic conditions: Medicare beneficiary enrollment and characteristics</h1> <p>According to the <a href="https://data.cms.gov/medicare-chronic-conditions" rel="nofollow">current page</a>, "CMS has retired the historical chronic conditions datasets ('Multiple Chronic Conditions' and 'Specific Chronic Conditions'). Refer to the Mapping Medicare Disparities tool below which can be used for retrieving similar data."</p> <p>The original page and the ZIP files are <a href="https://web.archive.org/web/20231014192833/https://www.cms.gov/data-research/statistics-trends-and-reports/chronic-conditions">archived on the Wayback Machine</a>. As of June 30, 2024, the ZIP files can also be downloaded from CMS.gov using a direct link to each file (e.g., <a href="https://www.cms.gov/research-statistics-data-and-systems/statistics-trends-and-reports/chronic-conditions/downloads/beneficiary_enrollment_tables.zip">beneficiary_enrollment_tables.zip</a>).</p>
Key habitat for male Strix nebulosa (Great Gray Owls) varies across the diurnal cycle and reflects sex-specific role, data archive
<p>We used GPS tracking and remotely-sensed environmental data to evaluate whether breeding-season habitat selection by adult male <em>Strix nebulosa </em>(Great Gray Owls) (n = 19) varied across diurnal periods (dawn, day, dusk, and night). To address knowledge gaps related to nocturnal habitat, we also evaluated finer-scale, microhabitat selection by male owls at night. Here, we include both the remotely-sensed habitat data and on-the-ground microhabitat data associated with owl locations. Generally, <em>S. nebulosa </em>are associated with mature forests for nesting and meadows for foraging. Yet, in our study, owls avoided herbaceous wetlands during the day but strongly selected them at dawn, dusk, and at night, indicating context-dependent habitat selection. Moreover, owls avoided dry meadows at all times of the day, suggesting that wet rather than xeric meadows are important for foraging. Owls also preferred nighttime microhabitats that facilitated foraging, such as those with presence of primary prey and open understories dominated by graminoids and forbs. During the daytime, owls preferred higher canopy cover and areas with increased soil moisture, which likely provided suitable roosting habitat. Understanding of habitat preferences across sexes, activity periods, and other contexts can improve the identification and conservation of critical habitat for wildlife.</p>
Archival mitogenomes identify invasion by the Batrachochytrium dendrobatidis CAPE lineage caused an African amphibian extinction in the wild
<p>Outbreaks of emerging infectious diseases are influenced by local biotic and abiotic factors, with host declines occurring when conditions favour the pathogen. Deterioration in the population of the microendemic Tanzanian Kihansi spray toad (<em>Nectophrynoides asperginis</em>) occurred after the construction of a hydropower dam, implicating habitat modification in this species decline. Population recovery followed habitat augmentation, however a subsequent outbreak of chytridiomycosis caused by <em>Batrachochytrium dendrobatidis </em>(<em>Bd</em>) led to the spray toads extinction in the wild. We show using spatiotemporal surveillance and mitogenome assembly of <em>Bd </em>from archived toad mortalities that the outbreak was caused by invasion of the <em>Bd</em>CAPE lineage and not the panzootic lineage <em>Bd</em>GPL. Molecular dating reveals an emergence of <em>Bd</em>CAPE across Southern Africa overlapping with the timing of the spray toads extinction. That our post-outbreak surveillance of co-occurring amphibian species in the Udzungwa Mountains shows widespread infection by <em>Bd</em>CAPE yet no signs of ill-health or decline suggests these other species can tolerate <em>Bd</em> when environments are stable. We conclude that, despite transient success in mitigating the impact caused by dams' construction, invasion by <em>Bd</em>CAPE caused the ultimate die-off that led to the extinction of the Kihansi spray toad.</p>
padpadpadpad/Padfield_2018_ELE_metab_size_struc: Archive of analysis and raw data for Padfield et al (2018) ELE
<p>This is an archived version of the data and analysis to go along with the paper:</p> <p>Padfield et al. (2018) Linking phytoplankton community metabolism to the individual size distribution. Ecology Letters. <a href="https://onlinelibrary.wiley.com/doi/full/10.1111/ele.13082">https://doi.org/10.1111/ele.13082</a>.</p>
samfranks/eu_meadow_birds: Public archive of data and code for paper publication
<p>Public archive of data and code for paper publication Franks <em>et al</em>. (2018). Evaluating the effectiveness of conservation measures for European grassland-breeding waders. <em>Ecology and Evolution</em></p>
Index of software revisions/commits archived by Software Heritage
<p><a href="https://www.softwareheritage.org">Software Heritage</a> is a comprehensive archive of publicly available software source code together with its development history, as captured by modern version control system.</p> <p>This dataset provides a full index of the revision (AKA "commits") identifiers archived by Software Heritage at a given point in time. Each revision identifier can be used to fetch complete revision information via either the Software Heritage API from the <a href="https://archive.softwareheritage.org">main archive</a> or as a <a href="https://docs.softwareheritage.org/devel/swh-model/persistent-identifiers.html">persistent identifier</a> to retrieve the same information from any existing Software Heritage mirrors.</p> <p>Also, revision identifiers are compatible with the identifiers used by the Git version control system, so that they can be cross-referenced with any existing Git repository.</p> <p><strong>Note</strong>: the authors of the dataset are currently anonymous for double-blind review needs.</p>
Illustrative Darwin core archive to output data from a citizen science platform to a collection management system
<p>Illustrative DwC archive to send data back to a collection management system from a citizen sciences platform. This illustrative archive displays the specimens used for the trans-institutional and trans-platform pilot project held in the frame of ICEDIG.</p> <p>Further description of its content in the milestone28 document, worpackage 5.2 of the ICEDIG project.</p>
ScienceDex guides
Understand access before you commit
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.