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172 results for “PRISM”
Fig. 5 in Jurassic and Cretaceous gastropods from hydrocarbon seeps in forearc basin and accretionary prism settings, California
Fig. 5. Late Jurassic and Early Cretaceous abyssochrysoids Hokkaidoconcha spp. and Abyssochrysos? giganteum sp. nov. from seep carbonates in California, USA. A–C. Hokkaidoconcha occidentalis (Stanton, 1895). A. Lectotype (USNM 23077) from Paskenta (Tithonian; site 2). B. Specimen (CAS 70391) with well−developed spiral sculpture from Wilbur Springs (Hauterivian; site 5). C. Specimen (UCMP 555091) with poorly developed spiral sculpture from NW Berryessa (Tithonian; site 10). D, E. Hokkaidoconcha tehamaensis sp. nov. from Paskenta (Tithonian; site 10). D. Holotype (UCMP 555092); apertural (D1) and lateral (D2) views. E. Paratype (CAS 70390), note fading axial ribs on flank. F, G. Hokkaidoconcha morenoensis sp. nov. from Moreno Gulch (Santonian; site 14) F. Holotype (LACMIP 13483) with well−developed axial ribs and spiral sculpture on base. G. Paratype (LACMIP 13484) with fading axial ribs on later whorls. H. Hokkaidoconcha bilirata sp. nov., holotype (UCMP 555093) from Wilbur Springs (Hauterivian; site 5). I. Hokkaidoconcha sp. (UCMP 555094) from NW Berryessa (Tithonian; site 10). J, K. Abyssochrysos? giganteum sp. nov. from E Berryessa (Lower Cretaceous; site 12). J. Holotype (UCMP 555095). K. Paratype (UCMP 555096).
FIG. 3 in Structure and genesis of the Taukha Mesozoic accretionary prism (southern Sikhote-Alin, Russia)
FIG. 3. — Generalized cross-section of the Taukha terrane and stratigraphic columns. Abbreviations: Er, Erdagouskaya unit; Gr, Gorboushinskaya unit; Sk, Skalistorechenskaya unit.
FIG. 4 in Structure and genesis of the lower structural unit of the Samarka Jurassic accretionary prism (Sikhote-Alin, Russia)
FIG. 4. — Cross-sections across the Samarka terrane in the Samarka village (A) and Uborka village (B) areas.
FIG. 2 in Structure and genesis of the lower structural unit of the Samarka Jurassic accretionary prism (Sikhote-Alin, Russia)
FIG. 2. — Location of studied areas. Abbreviations: A, Arsen'evsky; C, Central Sikhote-Alin; M, Meridional; MF, Mishan-Fushung faults.
FIG. 7 in Structure and genesis of the lower structural unit of the Samarka Jurassic accretionary prism (Sikhote-Alin, Russia)
FIG. 7. — Generalized section of the Samarka prism and stratigraphic columns of allocated tectonostratigraphic units. See legend on Figs 2 and 5.
FIG. 1 in Structure and genesis of the lower structural unit of the Samarka Jurassic accretionary prism (Sikhote-Alin, Russia)
FIG. 1. — Tectonostratigraphic terranes of the Sikhote-Alin and adjacent areas. After Khanchuk (1994). Abbreviations: CSAF, Central Sikhote-Alin fault; MFF, Mishan-Fushung faults.
PRISM Proof Repair Dataset
<p>This is the first release of a sample of the PRISM Coq proof repair dataset. We will update with later versions when repair mining is complete and goes through DARPA's approval process. The initial release (data and limitations) is documented here: https://docs.google.com/document/d/19A6YMm1glkcd7ze8wi87pxmUgogA3Mitny7mDl-192c/edit?usp=sharing. It includes about 200 unique changes. Later versions will include more data and better line number information, and will be deduplicated.</p>
The PRISM Intervention: a Multi-site Randomized Controlled Trial for Adolescents and Young Adults With Advanced Cancer
ClinicalTrials.gov study NCT03668223. IPD Sharing: YES. Countries: 1. Publications: 3.
PRISM for Adolescents With Type 1 Diabetes
ClinicalTrials.gov study NCT03847194. IPD Sharing: NO. Countries: 1. Publications: 2.
GIS layers for marsh extent, inlet tidal prism and watershed size on the Virginia Coast, 1851-2009
Title: Marsh and water extent and inlet watersheds (late-1800's and 2009); 2010 barrier island shorelines Focus: Determining change in marsh extent and change in inlet tidal prism and watershed size in relation to barrier island migration at the VCRSite: Marshes/bays from the southern tip of Smith Island to the northern tip of Wallops Island References: Deaton, C.D., Hein, C.J., and Kirwan, M.L., 2017, Barrier island migration dominates ecogeomorphic feedbacks and drives salt marsh loss along the Virginia Atlantic Coast, USA: Geology, v. 45, no. 2, p. 123-126, doi: 10.1130/G38459.1.(see also: associated Geology Data Repository item 2017030: http://www.geosociety.org/datarepository/2017/2017030.pdf)
Daily downscaled PRISM data (tmin and tmax) from monthly data for 1961-1990
<p>This data set is associated with the study "DDRP: real-time phenology and climatic suitability modeling of invasive insects" by <a href="https://doi.org/10.1371/journal.pone.0244005">Barker et al. (2020)</a>. We temporally downscaled monthly PRISM estimates for 1961‒1990 because DDRP requires daily data and PRISM daily temperature data for years prior to 1980 are not available. For each month of a given year, a bilinear interpolation method was used to assign each day an average temperature value that was iteratively smoothed and then adjusted so that the monthly averages were correct. Code for this analysis was written partially in Perl and partially in Octave, and is available at https://github.com/bbarker505/dailynorms. We temporally downscaled monthly PRISM estimates for 1961‒1990 because DDRP requires daily data and PRISM daily temperature data for years prior to 1980 are not available. For each month of a given year, a bilinear interpolation method was used to assign each day an average temperature value that was iteratively smoothed and then adjusted so that the monthly averages were correct. Code for this analysis was written partially in Perl and partially in Octave, and is available at https://github.com/bbarker505/dailynorms and https://doi.org/10.5281/zenodo.3601671.</p>
Data from: Unveiling the food webs of tetrapods across Europe through the prism of the Eltonian niche
<p>Aim</p> <p>Despite the recent calls on integrating the interaction networks into the study of large‐scale biodiversity patterns, we still lack a basic understanding of the functional characteristics of large interaction networks and how they are structured across environments. Here, building on recent advances in network science around the Eltonian niche concept, we aim to characterize the trophic groups in a large food web, and understand how these trophic groups vary across space.</p> <p>Location</p> <p>Europe and Anatolia.</p> <p>Taxon</p> <p>Tetrapods (1,136 species).</p> <p>Methods</p> <p>We combined an expert‐based metaweb of all European tetrapods with their spatial distributions and biological traits. To understand the functional structure of the metaweb, we first used a stochastic block model to group species with similar Eltonian niches, and then analysed these groups with species' functional traits and network metrics. We then combined these groups with species distributions to understand how trophic diversity varies across space, in function of the environment, and between the European ecoregions.</p> <p>Results</p> <p>We summarized the 1,136 interacting species within the metaweb into 46 meaningful trophic groups of species with a similar role in the metaweb. Specific aspects of the ecology of species, such as their activity time, nesting habitat and diet explained these trophic groups. Across space, trophic diversity was driven by both biotic and abiotic factors (species richness, climate and primary productivity), and the representation of trophic groups differed among European ecoregions.</p> <p>Main conclusions</p> <p>We have characterized the Eltonian niche of species in a large food web, both in terms of species interactions and functional traits, and then using this to understand the spatial variation of food webs at a functional level, thus bringing together network science, functional ecology and biogeography. Our results highlight the need to integrate multiple aspects of species ecology in global change research. Further, our approach is strongly relevant for conservation biology as it could help predict the impact of species translocations on trophic diversity.</p>
Saviprisma, clay prism VK6400:6
Kuningas Sanheribin aikainen nelisivuinen saviprisman katkelma. Nuolenpääkirjoituksessa tekstiä Jerusalemin piirityksestä. Lisätietoja: https://finna.fi/Record/museovirasto.F05B1BAB91BA4CB8C1E18905851FDF8E. Fragment of a four-sided prism from the reign of Sennacherib. Notes about the siege of Jerusalem in the cuneiform inscription. 3D-digitoitu osana Making Home Abroad / Kotona kulttuurissa -tutkimushanketta 2020-2021, käyttäen digitaalista fotogrammetriaa. 3D-digitointia on yksinkertaistettu huomattavasti katselukokemuksen sujuvoittamiseksi. 3D digitized as part of the Making Home Abroad / Kotona kulttuurissa research project 2020-2021, using digital photogrammetry. The 3D digitization is strongly simplified to ensure a smooth online visualization. Source: Objaverse 1.0 / Sketchfab
Sennacherib's Prism
Hexagonal clay prism, foundation record lists campaigns of Sennacherib until the start of his final war against Babylon, and includes a description of the tribute received from Hezekiah, King of Judah in 732 B.C.E. In the year 740 B.C.E., Assyria conquered Samaria, the capital of the northern kingdom of Israel, and took its people into exile. Eight years later, Assyria invaded Judah. (2 Kings 18:13) The Assyrian King Sennacherib demanded of Judean King Hezekiah a tribute of 30 talents of gold and 300 talents of silver. The Bible record states that this tribute was paid. Even so, Sennacherib insisted that the capital of Judah, Jerusalem, also surrender unconditionally to him.—2 Kings 18:9-17, 28-31. At Nineveh archaeologists have found an account of the same events in the annals of Sennacherib. Read more.... https://wol.jw.org/en/wol/d/r1/lp-e/102010450#h=10:0-11:492 Source: Objaverse 1.0 / Sketchfab
Data and processing scripts for PRISM barcode sequencing data used in "Massively parallel pooled screening reveals genomic determinants of nanoparticle-cell interactions"
<p>Sequencing data for the PRISM barcodes generated after nano-particle treatment is presented in this repository alongside the code to process the sequencing counts to generate the binning probabilities and weighted scores. <br> <br> For the details please see the original publication or the bioarxiv preprint: https://doi.org/10.1101/2021.04.05.438521<br> <br> The raw data is provided in PILOT_DATA_COUNTS.csv and EXPERIMENT_DATA_COUNTS.csv files, for the pilot and the actual experiment. <br> <br> For each of these files an R script is provided to process them, along with the output of the scripts (PILOT_DATA_PROBABILITIES.csv and EXPERIMENT_DATA_PROBABILITIES.csv)</p>
L'épopée de Gengis-khan au prisme des femmes. Une enquête sur la littérature pour la jeunesse en langue anglaise, française et italienne
Open the record for dataset details and reuse information.
FIG. 8 in Structure and genesis of the lower structural unit of the Samarka Jurassic accretionary prism (Sikhote-Alin, Russia)
FIG. 8. — Model of the mechanism of olistostrome formation. See legend on Fig. 5.
Products and Models for "Early Release Science of the Exoplanet WASP-39b with JWST NIRSpec PRISM"
<p>Associated publication: <a href="https://nam02.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.nature.com%2Farticles%2Fs41586-022-05677-y%2520&data=05%7C01%7Czafar%40jhu.edu%7C70cefcf501224b8d305708daed9f9533%7C9fa4f438b1e6473b803f86f8aedf0dec%7C0%7C0%7C638083566905963125%7CUnknown%7CTWFpbGZsb3d8eyJWIjoiMC4wLjAwMDAiLCJQIjoiV2luMzIiLCJBTiI6Ik1haWwiLCJXVCI6Mn0%3D%7C3000%7C%7C%7C&sdata=gyY0O%2FyMHX0paZC60ZCiQAif%2F0O8K2QKAuuF9%2FjtRpA%3D&reserved=0">https://www.nature.com/articles/s41586-022-05677-y</a></p> <p> </p> <p>OVERVIEW: Transmission spectroscopy of exoplanets has revealed signatures of water vapor, aerosols, and alkali metals in a few dozen exoplanet atmospheres. However, these previous inferences with the Hubble and Spitzer Space Telescopes were hindered by the observations’ relatively narrow wavelength range and spectral resolving power, which precluded the unambiguous identification of other chemical species—in particular the primary carbon-bearing molecules. Here we report a broad-wavelength 0.5–5.5 µm atmospheric transmission spectrum of WASP-39 b, a 1200 K, roughly Saturn-mass, Jupiter-radius exoplanet, measured with JWST NIRSpec’s PRISM mode as part of the JWST Transiting Exoplanet Community Early Release Science Team program. We robustly detect multiple chemical species at high significance, including Na (19σ), H<sub>2</sub>O (33σ), CO<sub>2</sub> (28σ), and CO (7σ). The non-detection of CH<sub>4</sub>, combined with a strong CO<sub>2</sub> feature, favours atmospheric models with a super-solar atmospheric metallicity. An unanticipated absorption feature at 4 µm is best explained by SO<sub>2</sub> (2.7σ), which could be a tracer of atmospheric photochemistry. These observations demonstrate JWST’s sensitivity to a rich diversity of exoplanet compositions and chemical processes.</p>
E-PRISM: Phase II Trial of Elotuzumab Lenalidomide and Dexamethasone in High-Risk Smoldering Multiple Myeloma
ClinicalTrials.gov study NCT02279394. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Clinical Trial of Peripheral Prism Glasses for Hemianopia
ClinicalTrials.gov study NCT00494676. IPD Sharing: Not stated. Countries: 2. Publications: 3.
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