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564 results for “ABS”
Dataset: Oatly Group AB (OTLY) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Olink Holding AB (publ) (OLK) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Text-fig. 3. Rhinoppioides quadrituberculatus MIKO gen. et sp. nov. Above: assumed fragments of legs as seen in body cavity of holotype (Aa – in dorsal view, Ab – in ventral view) and paratype (B, only dorsal view available). Below: speculative reconstruction of legs, assumed segments leg IV in above rows (numbers 1, 3, 5, 7, 12, 13, 14), assumed segments of leg I below (numbers 6, 9, 10). Rest of the segments assumed to belong to legs II and III. Only trochanters III (nr. 8) and IV (nr. 7, 12) undoubtedly belonging to the new species. Bars indicating 50 µm, numbers indicate identity of segments. in Oribatid Mite Fossils From Quaternary And Pre-Quaternary Sediments In Slovenian Caves I.Two New Genera And Two New Species Of The Family Oppiidae From The Early Pleistocene
Text-fig. 3. Rhinoppioides quadrituberculatus MIKO gen. et sp. nov. Above: assumed fragments of legs as seen in body cavity of holotype (Aa – in dorsal view, Ab – in ventral view) and paratype (B, only dorsal view available). Below: speculative reconstruction of legs, assumed segments leg IV in above rows (numbers 1, 3, 5, 7, 12, 13, 14), assumed segments of leg I below (numbers 6, 9, 10). Rest of the segments assumed to belong to legs II and III. Only trochanters III (nr. 8) and IV (nr. 7, 12) undoubtedly belonging to the new species. Bars indicating 50 µm, numbers indicate identity of segments.
Text-fig. 2. Map showing the distribution of localities included in the treatment of Brown (1962), based on the coordinates presented in Appendix Table 1. Localities are distributed across New Mexico (NM), Colorado (CO), Wyoming (WY), Montana (MT), South Dakota (SD) and North Dakota (ND). Also plotted are cited Canadian localities: Joffre Bridge, in Alberta (AB), and Ravenscrag, in Saskatchewan (SK). Map generated with Map-It (2014) website. in Revisions To Roland Brown'S North American Paleocene Flora
Text-fig. 2. Map showing the distribution of localities included in the treatment of Brown (1962), based on the coordinates presented in Appendix Table 1. Localities are distributed across New Mexico (NM), Colorado (CO), Wyoming (WY), Montana (MT), South Dakota (SD) and North Dakota (ND). Also plotted are cited Canadian localities: Joffre Bridge, in Alberta (AB), and Ravenscrag, in Saskatchewan (SK). Map generated with Map-It (2014) website.
Figure. PCA analysis based on GH-MspI, GH-AluI, PRL, and DGAT1 loci in Turkish native cattle breeds (Turkish Grey - TG, East Anatolian Red - EAR, Anatolian Black - AB, and South Anatolian Red - SAR). in Growth hormone (GH), prolactin (PRL), and diacylglycerol acyltransferase (DGAT1) gene polymorphisms in Turkish native cattle breeds
Figure. PCA analysis based on GH-MspI, GH-AluI, PRL, and DGAT1 loci in Turkish native cattle breeds (Turkish Grey - TG, East Anatolian Red - EAR, Anatolian Black - AB, and South Anatolian Red - SAR).
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical. in Description of the preimaginal stages and biology of the weevil Lixus (Dilixellus) pulverulentus (Scopoli, 1763) (Coleoptera: Curculionidae: Lixini)
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical.
Text-fig. 6. Molars of Microtus from Mikhailovka-5. Microtus ex gr. agrestis LINNAEUS, 1761: a–l: M2, m–s: M3; Microtus (Terricola) ex gr. subterraneus (SELYS-LONGCHAMPS, 1836): t–z: m1, aa–ab: m2, ac–ag: M3. in Late Pleistocene (Eemian) Mollusk And Small Mammal Fauna From Mikhailovka-5 (Kursk Oblast, Central Russia)
Text-fig. 6. Molars of Microtus from Mikhailovka-5. Microtus ex gr. agrestis LINNAEUS, 1761: a–l: M2, m–s: M3; Microtus (Terricola) ex gr. subterraneus (SELYS-LONGCHAMPS, 1836): t–z: m1, aa–ab: m2, ac–ag: M3.
Text-fig. 4. Dorsal view of endocranium of a Devonian osteolepiform (Eusthenopteron foordi). Derivatives of the teniform cartilages blue (cf. fig. 7 in Bjerring 2015). ab: anterolateral bar of otico-occipital (Jarvik 1954) which corresponds to the orbitoparietal commissure of the armadillo; rfsa: endoskeleton above the supra-auditive fossa which corresponds to the parietal lamina of the armadillo; tn: tectum nasi; to: tectum orbitae which corresponds to the orbital cartilage and the orbitonasal commissure of the armadillo. in Cartilago Teniformis And Its Derivatives: Additional Information On The Basic Composition And Evolution Of The Skull
Text-fig. 4. Dorsal view of endocranium of a Devonian osteolepiform (Eusthenopteron foordi). Derivatives of the teniform cartilages blue (cf. fig. 7 in Bjerring 2015). ab: anterolateral bar of otico-occipital (Jarvik 1954) which corresponds to the orbitoparietal commissure of the armadillo; rfsa: endoskeleton above the supra-auditive fossa which corresponds to the parietal lamina of the armadillo; tn: tectum nasi; to: tectum orbitae which corresponds to the orbital cartilage and the orbitonasal commissure of the armadillo.
Data for Linking Experimental and Ab-initio Thermochemistry of Adsorbates with a Generalized Thermochemical Hierarchy
<p>Data and scripts for the preprint "Linking Experimental and Ab-initio Thermochemistry of Adsorbates with a Generalized Thermochemical Hierarchy".</p>
Long-Acting Cabotegravir Plus VRC-HIVMAB075-00-AB (VRC07-523LS) for Viral Suppression in Adults Living With HIV-1
ClinicalTrials.gov study NCT03739996. IPD Sharing: YES. Countries: 2. Publications: 1.
Density of Acanthocyclops vernalis, Leptodiaptomus tyrelli and Daphnia pulicaria in Hidden Lake (Banff, AB, Canada) from 2014 to 2020
This data file is the combination of two data sets of two different methodology (The Derry lab and Fisher lab; see method section for differences). The density of three dominant species were assessed every summer during the same week from 2014 to 2020 by the Fisher lab in Hidden Lake, Banff National Park, Canada: the cyclopoid Acanthocyclops vernalis, the calanoid Leptodiaptomus tyrelli and the cladocera Daphnia pulicaria. An extra sampling effort was done by the Derry lab around the rotenone treatments. The objective of this study was to assess the effect of two rotenone application (in summer 2018 and 2019) on zooplankton populations.
Accurate and efficient representation of intramolecular energy in ab initio generation of crystal structures. Part I: Adaptive local approximate models
<p>The global search stage of Crystal Structure Prediction (CSP) methods requires a fine balance between accuracy and computational cost, particularly for the study of large flexible molecules. A major improvement in the accuracy and cost of the intramolecular energy function used in the CrystalPredictor II (Habgood, M., Sugden, I. J., Kazantsev, A. V., Adjiman, C. S. & Pantelides, C. C. (2015).<em> J Chem Theory Comput</em> <strong>11</strong>, 1957-1969) program is presented, where the most efficient use of computational effort is ensured via the use of adaptive Local Approximate Model (LAM) placement. The entire search space of relevant molecule’s conformations is initially evaluated using a coarse, low accuracy grid. Additional LAM points are then placed at appropriate points determined via an automated process, aiming to minimise the computational effort expended in high energy regions whilst maximising the accuracy in low energy regions. As the size, complexity, and flexibility of molecules increase, the reduction in computational cost becomes marked. This improvement is illustrated with energy calculations for benzoic acid and the ROY molecule, and a CSP study of molecule XXVI from the sixth blind test (Reilly <em>et al.</em>, (2016).<em> Acta Cryst. B, accepted</em>.), which is challenging due its size and flexibility. Its known experimental form is successfully predicted as the global minimum. The computational cost of the study is tractable without the need to make unphysical simplifying assumptions. </p>
Index der Nachrichten aus der Brüdergemeine. Teil 1: Gemein-Nachrichten (ab 1765). Teil 2: Nachrichten aus der Brüder-Gemeine (1819-1894). Teil 3: Periodical Accounts (1790-1965). Teil 4: Beyträge zur Erbauung aus der Brüder-Gemeine (1817 und 1818). Teil 5: Mitteilungen aus der Brüdergemeine (1895-1941). Teil 6: Statistik.
<p>Mit den <em><strong>Gemein-Nachrichten</strong></em> stellt das Unitätsarchiv Herrnhut der weltweiten Evangelischen Brüder-Unität - Herrnhuter Brüdergemeine (Unitas Fratrum / Moravian Church) das älteste und umfangreichste Mitteilungsblatt der Brüdergemeine digital zur Verfügung. Es enthält Berichte aus Gemeinden sowie dem Missions- und Diasporawerk der Brüdergemeine sowie Reden und Lebensläufe. Die <em>Gemein-Nachrichten</em> wurden ab 1765 in Fortsetzung des <em>Jüngerhaus-Diariums</em> (1747-1764) ausschließlich handschriftlich vervielfältigt.</p> <p>In Druck gingen ab 1790 die englischsprachigen <strong><em>Periodical Accounts</em></strong>, zwischen 1817 und 1818 die <strong><em>Beyträge zur Erbauung aus der Brüder-Gemeine</em></strong> und zwischen 1819 und 1894 die <strong><em>Nachrichten aus der Brüder-Gemeine</em></strong>. Das Nachrichtenblatt fand in den <strong><em>Mitteilungen aus der Brüder-Gemeine zur Förderung christlicher Gemeinschaft</em></strong> ab 1895 bis 1941 seine Fortsetzung.</p> <p>Der hier vorliegende <strong>Index</strong> schließt die <strong>Nachrichten aus der Brüdergemeine</strong> auf und verlinkt, wenn möglich, die Primärdigitalisate. Die Indizierung erfolgt im und für das Projekt <a href="https://tu-dresden.de/gsw/virtuos/joker4/digitalherrnhut">#DigitalHerrnhut</a> in virTUos (Virtuelles Lehren und Lernen an der TU Dresden im Open Source-Kontext), von 2021 bis 2025 gefördert von der Stiftung Innovation in der Hochschullehre, und im Rahmen des <a href="https://dhh.hypotheses.org/" target="_blank" rel="noopener">Moravian Knowledge Network</a>.</p> <p>Ab der Version v14 (12.09.2025) ist der <strong>Index gegliedert und deutlich erweitert</strong> und kann entsprechend zitiert werden:</p> <p>Teil 1: Gemein-Nachrichten (ab 1765)<br>Teil 2: Nachrichten aus der Brüder-Gemeine (1819-1894)<br>Teil 3: Periodical Accounts (1790-1965) (in Bearbeitung)<br>Teil 4: Beyträge zur Erbauung aus der Brüder-Gemeine (1817 und 1818)<br>Teil 5: Mitteilungen aus der Brüdergemeine (1895-1941) (in Vorbereitung)<br>Teil 6: Statistik</p>
Föremål. Äggersättningspulver. AB Kronjäst.
Föremål. Äggersättningspulver. AB Kronjäst Mjölby. Shot me be, using a Canon 700d, Darktable and Agisoft. Retopology by Niclas Ekholm. Thank you Stockholms Stadsmuseum for providing interesting objects. Check out https://sketchfab.com/Stadsmuseet Source: Objaverse 1.0 / Sketchfab
Ab initio data to generates machine-learned force fields of ions in aqueous medium in VASP format.
<p>ML_AB_H: Datasets of 64 water molecules and a single proton with 64 water molecules.</p> <p>ML_AB_VP2: Datasets of a single V^2+ ion with 64 water molecules.</p> <p>ML_AB_VP3: Datasets of a single V^3+ ion with 64 water molecules.</p> <p>ML_AB_FeP2: Datasets of a single Fe^2+ ion with 64 water molecules.</p> <p>ML_AB_FeP3: Datasets of a single Fe^3+ ion with 64 water molecules.</p> <p>ML_AB_CuP1: Datasets of a single Cu^+ ion with 64 water molecules.</p> <p>ML_AB_CuP2: Datasets of a single Cu^2+ ion with 64 water molecules.</p> <p>ML_AB_RuP2: Datasets of a single Ru^2+ ion with 64 water molecules.</p> <p>ML_AB_RuP3: Datasets of a single Ru^3+ ion with 64 water molecules.</p> <p>ML_AB_AgP1: Datasets of a single Ag^+ ion with 64 water molecules.</p> <p>ML_AB_AgP2: Datasets of a single Ag^2+ ion with 64 water molecules.</p> <p>ML_AB_O2: Datasets of a single O2 ion with 64 water molecules.</p> <p>ML_AB_O2N1: Datasets of a single O2^- ion with 64 water molecules.</p> <p>ML_AB_water: Datasets of 64 water molecules presenting bulk water and 64 water molecules representing water slab.</p> <p>All datasets were generated by VASP using PAW, plane wave basis sets with cutoff energy of 520 eV and RPBE+D3 exchange-correlation functional with zero-damping. All ab initio calculations were done on extended systems with periodic boundary conditions. See details in <a href="https://doi.org/10.48550/arXiv.2409.11000">https://doi.org/10.48550/arXiv.2409.11000</a>.</p>
Research Data For "Structure and Interactions at the Mg(0001)/Water Interface: An ab initio Study" Paper
<p>This folder contains data used in the paper "Structure and Interactions at the Mg/Water Interface: An ab initio Study". Some details on the structure are as follows:</p> <p>The folder "figures" contains data to create various figures in the main paper.</p> <p>The folder "md_traj" contains the molecular dynamics trajectory. The file "traj.exyz" is a standard format which can be opened with various software. "traj.json" contains the same information in an in-house format used by the author. The "thermo_data.json" contains various thermodynamics properties over the simulation, such as temperatures and kinetic energies. Units are femtoseconds, Angstrom, electron-volts and Kelvin.</p> <p>The folders "mg_plus_clusters"/"mg_plus_monomer"/"misc_reference_structs" contain geometries for various structures used in the paper (in *.exyz format). These also contain *.json files; these contain information on how the calculations were carried out in a format used by the author (they are small files primarily included for the benefit of the author).</p> <p> </p>
A benchmark study of ab initio gene prediction methods in diverse eukaryotic organisms
<p>G3PO (Gene and Protein Prediction PrOgrams) Benchmark was designed to represent many of the typical challenges faced by current genome annotation projects. The benchmark is based on a carefully validated and curated set of real eukaryotic genes from 147 phylogenetically disperse organisms (from human to protists). <br> </p>
Ab initio umbrella sampling of a potassium ion at the aqueous graphene interface
<p>Ab initio molecular dynamics trajectories obtained with umbrella sampling of a potassium ion at the aqueous graphene interface, where in each trajectory the ion is at a different height from the graphene sheet.</p> <p>This repository contains supplementary data supporting the findings of the paper:</p> <p>L. Joly, R. H. Meissner, M. Iannuzzi, G. Tocci, "Osmotic Transport at the Aqueous Graphene and hBN Interfaces: Scaling Laws from a Unified, First-Principles Description", ACS Nano, 15, 9, 15249–15258 (2021), DOI: 10.1021/acsnano.1c05931.</p>
Ab initio molecular dynamics trajectories of liquid water at the interface with hBN sheets
<p>Ab initio molecular dynamics trajectories of water confined between hBN sheets for different confinement widths and system sizes.</p> <p>This repository contains data supporting the findings of the paper: </p> <p>G. Tocci, M. Bilichenko, L. Joly, M. Iannuzzi, <em>Ab initio</em> nanofluidics: disentangling the role of the energy landscape and of density correlations on liquid/solid friction, Nanoscale, 12, 10994-11000 (2020). DOI: 10.1039/D0NR02511A.</p>
Ab initio molecular dynamics trajectories of liquid water at the interface with graphene sheets
<p>Ab initio molecular dynamics trajectories of water in contact with graphene sheets for different confinement widths and system sizes</p> <p>This repository contains data supporting the findings of the paper: </p> <p>G. Tocci, M. Bilichenko, L. Joly, M. Iannuzzi, <em>Ab initio</em> nanofluidics: disentangling the role of the energy landscape and of density correlations on liquid/solid friction, Nanoscale, 12, 10994-11000 (2020). DOI: 10.1039/D0NR02511A.</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)
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.