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1,245 results for “dating”
Nicosia, Cyprus. Tomb slab dated 1558
<p>Nicosia, Cyprus. Tomb slab dated 1558. Now I the Medieval Museum of Cyprus, Castle of Lemesos.</p>
Millennial slip-rates variability of along-strike active faults in the Italian Southern Apennines revealed by cosmogenic 36Cl dating of fault scarps
<p>Supporting information for "<span>Millennial slip-rates variability of along-strike active faults in the Italian Southern Apennines revealed by cosmogenic <sup>36</sup>Cl dating of fault scarps"</span></p>
FIGURE 1 in Fossil calibration dates for molecular phylogenetic analysis of snakes 1: Serpentes, Alethinophidia, Boidae, Pythonidae
FIGURE 1. Time-calibrated phylogeny of Serpentes based on Pyron et al. (2013) and Reynolds et al. (2014). Numbers represent calibrated nodes in text. Fossil taxa are the calibration points for their respective nodes. Thickened bars represent well-sampled, taxonomically resolved stratigraphic distributions for the sister taxa to Pan-Serpentes and snake lineages whose first occurrences are determined by older sister taxa. Thin bars represent estimated stratigraphic distributions for taxa with poorly resolved fossil records, or no published fossil record (names in grey). "Scolecophidia" represents a paraphyletic grade with respect to Alethinophidia (see text).
FIGURE 2 in Sixteen vetted fossil calibrations for divergence dating of Charadriiformes (Aves, Neognathae)
FIGURE 2. Phylogram of alcid relationships showing calibrated nodes 7-15 (modified from Smith, 2011a, figure 1.26). Numbered nodes in red correspond to the following calibrations: (8) divergence of Alcidae from Stercorariidae; (9) divergence of Aethiini from Fraterculini; (10) divergence of Fratercula arctica from Fratercula corniculata; (11) divergence of Cepphus carbo from Cepphus columba; (12) divergence of Synthliboramphus hypoleucus from Synliboramphus craveri;divergence of Synthliboramphus hypoleucus from Synthliboramphus craveri; (13) divergence of Brachyramphus marmoratus from Brachyramphus brevirostris; (14) divergence of Alle alle from Uria; (15) divergence of Uria lomvia from Uria aalge; (16) divergence of Alca torda from Pinguinus impennis.
FIGURE 1 in Sixteen vetted fossil calibrations for divergence dating of Charadriiformes (Aves, Neognathae)
FIGURE 1. Phylogram of charadriiform relationships showing calibrated nodes 1-7 (modified from Baker et al., 2007, figure 1). Numbered nodes in red correspond to the following calibrations: (1) divergence of Charadriiformes from its nearest outgroup; (2) divergence of Charadrii from other Charadriiformes; (3) divergence of Burhinidae from Chionis and Pluvianellus; (4) divergence of Jacanidae from other Scolopaci; (5) basal divergence among Calidridinae; (6) divergence of Turnicidae from Lari; (7) basal divergence of Laromorphae; (8) divergence of Alcidae from Stercorariidae.
FIGURE 1 in Fossil calibration dates for molecular phylogenetic analysis of snakes 2: Caenophidia, Colubroidea, Elapoidea, Colubridae
FIGURE 1. Phylogeny of Caenophidia from Pyron et al. (2013a) temporally calibrated on minimum ages reported here. Taxon names in grey have not been described in the fossil record. Taxon names in black have been described from fossils. See Holman (2000) and Szyndlar (2012) for records. Taxa labeled with two identifiers represent the most inclusive clades subtended by those identifiers following Pyron et al. (2013a).
FIGURE 3. A in How to date a dragonfly: Fossil calibrations for odonates
FIGURE 3. A cladogram of Odonata (adapted from Carle et al., 2015) showing the phylogenetic relationships among Anisopteran families. The species highlighted in blue are the crown group fossils discussed in this manuscript. Node numbers are listed in the order in which they are discussed in the manuscript. Node ages indicate the minimum age of the crown fossil used. The question mark indicates weak support for the node Petaluridae + Gomphidae (see Carle et al., 2015 for more details). Extinct species are indicated by a dagger. Note: nodes 2, 5, 6, 8, 9, and 10 are drawn for simplicity, but these fossil taxa may be nested deep within the family to which they are assigned. The fossils shown in the tree are not sister to the rest of the members of the family.
FIGURE 1 in How to date a dragonfly: Fossil calibrations for odonates
FIGURE 1. Wing venation of Anisoptera (after Bechly et al., 2001) (details for the abbreviations in Appendix 1).
FIGURE 2 in How to date a dragonfly: Fossil calibrations for odonates
FIGURE 2. Wing venation of Liassophlebia sp., specimen TUClP In 192, from the Liassic alpha of Pechgraben in Germany (Bechly, 1999) (Scale equals 10 mm)
Names, locations, sampling dates, physical characteristics, water chemistry, and plankton data in samples collected in Canadian Prairie lakes in July and August, 2023
<p>PPR Sample Lake Data.xlsx contains names, locations, sampling dates, physical characteristics, water chemistry, and plankton data in samples collected in Canadian Prairie lakes in July and August, 2023. PPR Sample Lake Fact Sheets.pdf contains fact sheets for every sampled lake including maps and essential lake, catchment, and water chemistry characteristics. </p>
FIGURE 2 in A new, to date endemic, family of dragonfly in the mid-Cretaceous fossil fish Konservat-Lagerstätte of Haqel, Lebanon (Odonata: Anisoptera)
FIGURE 2. Mid-Cretaceous fossil fish Konservat-Lagerstätte of Haqel, Lebanon. A, Geological map of outcrop (modified from Dubertret, 1945; Dubertret & Wetzel, 1945). J6 = uppermost Jurassic; C2a = lower Barremian 'Grès du Liban' sandstone; C2b = Barremian clay and oolitic deposition of upper part of 'Grès du Liban' and oolitic deposition of lower part of Jezzinian; C3 = micritic part of Jezzinian (uppermost Barremian-lowermost Aptian); C4 = Albian; C5 = Cenomanian; Q = Quaternary scree; βJ6 = Kimmeridgian volcanic deposition; βC3 = Jezzinian volcanic deposition. Thick lines represent faults. Scale bar = 1 km. B, General view of outcrop. C & D, Details of stratigraphic layers of outcrop.
FIGURE 3 in A new, to date endemic, family of dragonfly in the mid-Cretaceous fossil fish Konservat-Lagerstätte of Haqel, Lebanon (Odonata: Anisoptera)
FIGURE 3. Lebanoaeshna mikhaeli gen et sp. nov., Holotype I-26247/1A and B, part and counterpart. A, Counterpart, specimen I-26247/1B. B, Part, specimen I-26247/1A. C, Drawing of the specimen I-26247/1A completed by parts preserved on specimen I-26247/1B.
FIGURE 1 in A new, to date endemic, family of dragonfly in the mid-Cretaceous fossil fish Konservat-Lagerstätte of Haqel, Lebanon (Odonata: Anisoptera)
FIGURE 1. Palaeogeography map of Lebanon and Levantine area during late Cenomanian. Map redrawn and adapted from Philip & Floquet (2000) and Barrier & Vrielynck (2008) and Scotese (2014).
FIGURE 1 in Typification of the name Sedum monregalense (Crassulaceae) with notes on the correct publication date
FIGURE 1. (Icono)lectotype of Sedum monregalense Balbis (Photo L. Guglielmone). The dotted lines show the "Flores ante florescentiam nutantes" as quoted in the protologue; the 6-parted flowers (white arrows) and the 5-parted flowers (black arrows) reported in the "Obs." of the prologue are also underlined.
FIGURE 2 in Typification of the name Sedum monregalense (Crassulaceae) with notes on the correct publication date
FIGURE 2. Epitype of Sedum monregalense Balbis, collected near Rastello (Val Ellero, Piedmont, Italy) by E. Ferrari in the July 1897 (Photo L. Guglielmone).
Figure 12. Tip-dated Bayesian phylogenetic analyses. A, unconstrained phylogeny using hypothesis 1 in A new dentition-based phylogeny of Litopterna (Mammalia: Placentalia) and 'archaic' South American ungulates
Figure 12. Tip-dated Bayesian phylogenetic analyses. A, unconstrained phylogeny using hypothesis 1 (H1) matrix. B, tip-dated topology constrained Bayesian phylogeny using hypothesis 1 (H1) matrix and constraining the node for the common ancestor of SANUs between the K/Pg boundary and the oldest age for the kollpaniines of Tiumpampa (66–65.075 Mya). The topological constraint in (B) was based on the topology of the undated Bayesian tree for H1. The trees in (A) and (B) represent a 50% majority rule in which tree support is indicated using Bayesian posterior probabilities in the nodes, and the node bars represent the 95% highest posterior density (HPD) for the estimated node ages. In (B), node support is only indicated for the node that was unconstrained (the undated tree presented a polytomy for that node). Litopterna is indicated with a star, but other nodes or tips of relevance are indicated in circles of different colours: blue, orders; black, families.
Mobility and persistence of pesticides and emerging contaminants in age-dated and redox-classified groundwater under a range of land use types [data set]
<p>Data set covering measured pesticides and emerging contaminants, the tritium and noble gas data and metadata for which the results are discussed in the publication in Science of the Total Environment (2024); doi: 10.1016/j.scitotenv.2024.176344</p>
Irrigation water salinity impacts Date palm leaf fungi
Open the record for dataset details and reuse information.
Aoristic dating
<p>Dieser Datensatz dokumentiert die aoristische Datierung von Fundstellen im Drei-Seen-Land. Er ist Teil der Publikation <em>“Aufgetau(ch)t. Archäologie zu Seeufersiedlungen, Eisfunden und Klimawandel”</em>.</p>
European origins of Squamata supported by biogeographic analysis of fossil-tip-dated phylogenies using paleocontinental plate-tectonic models
<p>Attached are the full results for the biogeographic analyses, with all tips labeled with taxon names. In addiiton, we have included the code utilized for all three trees used.</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.