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932 results for “CAP”
Sheepskin cap
Sheepskin cap, the so-called "baranica" is a headgear made of two types of natural leather: white sheep fur on the inside and black fleece caracula on the outside. Inventory number: MT-E/3109 District Museum in Tarnów ca. 1990, Braszów (Rom. Brașov) Romania https://muzea.malopolska.pl/en/objects-list/1359 Source: Objaverse 1.0 / Sketchfab
Molodensky's truncation coefficients for cap integration in spectral gravity forward modelling
<p>Provided are Molodensky's truncation coefficients for cap-modified spectral gravity forward modelling from the <a href="https://doi.org/10.1007/s00190-019-01277-3">Bucha et al. (2019)</a> study. The coefficients are evaluated for</p> <ul> <li>the spherical distance of <em><span>\(\psi_0 = 100000\ \mathrm{m} / 6378137\ \mathrm{m}\)</span> </em>(100 km integration radius from the evaluation point),</li> <li>the reference sphere having the radius <span>\(R = 6378137\ \mathrm{m}\)</span>,</li> </ul> <ul> <li>the radius of the evaluation point<em> <span>\(r = 6378137\ \mathrm{m} + 7000\ \mathrm{m}\)</span></em>,</li> <li>harmonic degrees <span>\(n=0,\dots,21600\)</span>,</li> <li>topography powers <span>\(p=1,\dots,30\)</span>,</li> <li>radial derivatives <span>\(k=0,\dots,40\)</span>, and</li> <li>the first- and second-order horizontal derivatives.</li> </ul> <p>The coefficients were computed using 256 significant digits, ensuring 24-digit accuracy or better. After the evaluation, the coefficients were converted to double precision with 16 significant digits. Importantly, in some cases, the loss of significance errors may be encountered during the spherical harmonic synthesis when using the coefficients (see the reference below).</p> <p>Bucha, B., Hirt, C., Kuhn, M., 2019. <em>Cap integration in spectral gravity forward modelling up to the full gravity tensor</em>. Journal of Geodesy, <a href="https://doi.org/10.1007/s00190-019-01277-3">https://doi.org/10.1007/s00190-019-01277-3</a>.</p>
dataset Spagnesi et al., 2023 "Preservation of chemical and isotopic signatures within the Weißseespitze millennial old ice cap (Eastern Alps), despite the ongoing ice loss"
<p>Dataset related to the paper "<strong>Preservation of chemical and isotopic signatures within the Weißseespitze millennial old ice cap (Eastern Alps), despite the ongoing ice loss</strong>" by Spagnesi et al. (2023). It contains the chemistry, microcharcoal and water stable isotopes measurements conducted on the Weißseespitze ice cores drilled in 2019 and 2021.</p>
Transcription start sites from capped small RNA-seq of rat nucleus accubmens and prefrontal cortex
<p>Small RNAs of ∼15–60 nt were size selected by denaturing gel electrophoresis starting from total RNA extracted from 14 rat brain tissue dissections. For csRNA libraries, cap selection was followed by decapping, adapter ligation, and sequencing. For input libraries, 10% of small RNA input was used for decapping, adapter ligation, and sequencing. After library quality check by gel electrophoresis, the samples were sequenced using the Illumina NextSeq 500 platform using 75 cycles single end. Sequencing reads were aligned to the rat mRatBN7.2 genome assembly using STAR v2.5.3a aligner with default parameters. Transcriptional start regions were defined using HOMER’s findPeaks tool. </p> <p>Duttke, S.H., Montilla-Perez, P., Chang, M.W., Li, H., Chen, H., Carrette, L.L.G., de Guglielmo, G., George, O., Palmer, A.A., Benner, C., et al. (2022). Glucocorticoid Receptor-Regulated Enhancers Play a Central Role in the Gene Regulatory Networks Underlying Drug Addiction. Front. Neurosci. 16, 858427.</p>
LOW Virkalakki - Uniform cap
Junanlähettäjän virkalakki on kuulunut Emelie "Milly" Tojkanderille (1866-1939), joka oli ensimmäinen nainen asemapäällikön virassa Suomessa. Hän työskenteli Valtionrautateillä eri tehtävissä kaikkiaan 48 vuotta ja yleni harjoittelijasta kirjuriksi ja asemapäälliköksi. Lakki on Valtionrautateiden virkapukukaudelta 1929-1950. Lakin yksityiskohdat, merkit ja värit kertovat kantajansa ammatista ja tehtävästä rautateillä. Train dispatcher's uniform cap Belonged to Emelie "Milly" Tojkander (1866-1939), the first female stationmaster in Finland. She worked in the Finnish State Railways in different positions during 48 years. Cap is from State Railways' uniform period years 1929-1950. Details, marks and colours of the cap tell about the owner's position and profession in the railways. The object: Finnish Railway Museum (member of Traffic Museums Association). 3D model: Finnish Railway Museum and Ninma Oy. https://rautatiemuseo.finna.fi/Record/musketti_rautatie.M014:4847: Source: Objaverse 1.0 / Sketchfab
Percussion-cap pistol
ID no.: MCh-H/273 Museum: Irena and Mieczysław Mazaraki Museum in Chrzanów https://muzea.malopolska.pl/pl/lista-obiektow/500 Digitalisation: RDW MIC, Małopolska's Virtual Museums project Source: Objaverse 1.0 / Sketchfab
Pipa amb cap de drac
**CAT** Pipa representant a la cassoleta un cap de drac, realitzada en escuma de mar i amb la cànula d'àmbar. **ES** Pipa representando en la cazoleta una cabeza de dragón, realizada en espuma de mar y con la boquilla de ámbar. **EN** Pipe with a meerschaum bowl in the shape of a dragon's head and an amber stem. Número de registre: MFM S-3944. Model: Laia Tubío. Edició model: Laura Gómez. Text: Museu Frederic Marès Source: Objaverse 1.0 / Sketchfab
Romul Ladea-Cap de copil
Romul Ladea, Cap de copil. Material: teracotă. – Este o lucrare de plastică mică materialul folosit fiind teracota (lutul ars); portretul expresiv este al unui băiat, redat realistic, la care remarcăm reflectarea cu mare măiestrie a stării psihice a modelului, cât și surprinderea perfectă a unei frăgezimi a vârstei într-un grad mare de plasticitate, sculpturalitate. Source: Objaverse 1.0 / Sketchfab
Polish Air Force in the West officers's cap
ID no.: MLP 755/1 Museum: Polish Aviation Museum http://muzea.malopolska.pl/en/obiekty/-/a/26873/1124080 Digitalisation: RDW MIC, Małopolska's Virtual Museums project Source: Objaverse 1.0 / Sketchfab
M1941 Wool Knit Cap w/ M1944 Goggles
US Wool Knit Cap, known as "Jeep Cap" since it was often worn by Jeep drivers. essentially a beanie with a brim. The M1944 Goggles are the Army-issue variant of the Air Force pattern B8 Goggles (issued since 1943). Goggles model is originally an 1974 SWDG Model made by **Olmo Potums** as part of their CVC helmet model ( https://sketchfab.com/3d-models/combat-vehicle-crewman-cvc-helmet-vietnam-era-c1516dc3d0ea420b9246334a94e5681e ) I've changed the straps and edited the overall model to be more accurate to the 1944 pattern, also created a new texture and UV. References: https://www.wwiiimpressions.com/products/200 https://blog.atthefront.com/us_images/head/jeep-cap-main.jpg https://www.sparks-military.com/en/helmet-and-attachments/730-us-dust-goggles-m-1944.html Source: Objaverse 1.0 / Sketchfab
A pair of percussion-cap pistols
A pair of percussion-cap pistols in a case belonging to Gen. Józef Chłopicki ID no.: MNK V-2883/1-9 Museum: The National Museum in Kraków https://muzea.malopolska.pl/en/objects-list/2492 Digitalisation: Digitalisation: RDW MIC, Virtual Małopolska project Source: Objaverse 1.0 / Sketchfab
Supporting Data: Exploring Canyons Beneath Devon Ice Cap
<p>These data are associated with the paper "<span>Exploring Canyons Beneath Devon Ice Cap for Sub-Glacial </span><span>Drainage Using Radar and Thermodynamic Modeling". This repository contains 3 data sets:</span></p> <ul> <li><span>RES simulations - returned power radargrams (Matlab .mat format) from 4 simulated scenarios over Canyon B at DEV3_PER0a_Y86a. These include 2 frozen bed scenarios (0.2m and 0.35m roughness) and 2 scenarios with a 10m canal (0.2m and 0.35m roughness).</span></li> <li><span>Temp simulations - the folder for each location simulated contains the following files:</span> <ul> <li><span>xx.csv - all x locations (in m) for the 2-D grid modeled</span></li> <li><span>zz.csv - all z locations (in m) for the 2-D grid modeled</span></li> <li><span>6 temperature grids (in degrees C) corresponding to the x and y positions in xx.csv and zz.csv. The filename indicates the basal boundary condition ("Lachenbruch" or "Constant") and accumulation rate ("b=<>") used. </span></li> </ul> </li> </ul>
Examination of 6 and 12 Month Follow-up of Calcium Hydroxide and Calcium Silicate Materials Used in Direct and Indirect Pulp Capping
<p>This dataset includes data evaluating the clinical and radiographic 6 and 12-month treatment success of calcium hydroxide and calcium silicate materials in indirect pulp therapy (IPT) and direct pulp capping (DPC) applications in teeth with deep dentin caries.</p>
Stratigraphic and Isotopic Evolution of the Martian Polar Caps from Paleo-Climate Models
<p>The data in this folder is a collection of outputs or manipulated variables from the LMD-MGCM simulations presented in figures in the JGR article "Stratigraphic and Isotopic Evolution of the Martian Polar Caps from Paleo-Climate Models."<br> </p>
Black-capped and mountain chickadee range-wide condition
<p>Both abiotic and biotic drivers influence species distributions. Abiotic drivers, such as climate, have received considerable attention, even though biotic drivers, such as hybridization, often interact with abiotic drivers. We sought to explore the (1) costs of co-occurrence for ecologically similar species that hybridize and (2) associations between ecological factors and condition to understand how abiotic and biotic factors influence species distributions. For two closely related and ecologically similar songbirds, black-capped and mountain chickadees, we characterized body condition, as a proxy for fitness, using a 1,358 individual range-wide dataset. We compared body condition in sympatry and allopatry with several abiotic and biotic factors using species-specific generalized linear mixed models. We generated genomic data for a subset of 217 individuals to determine the extent of hybridization-driven admixture in our dataset. Within this data subset, we found that ~11% of the chickadees had hybrid ancestry, and all hybrid individuals had typical black-capped chickadee plumage. In the full data set, we found that birds of both species, independent of demographic and abiotic factors, had significantly lower body condition when occurring in sympatry than birds in allopatry. This could be driven by either the inclusion of cryptic, likely poor condition, hybrids in our full dataset, competitive interactions in sympatry, or be due to range edge effects. We are currently unable to discriminate between these mechanisms. Our findings have implications for mountain chickadees in particular, which will encounter more black-capped chickadees as black-capped chickadee ranges shift upslope and could lead to local declines in mountain chickadee populations.</p>
Geodetic mass balance of Mýrdalsjökull ice cap, 1999−2021: DEM processing and climate analysis
<p>This repository gathers the data I used and produced during my master thesis at the University of Iceland from April to September 2022 with the financial support of the Landsvirkjun.</p> <p>The geodetic mass of Mýrdalsjökull, the fourth largest Icelandic ice cap, was investigated over the period 1999-2021. The untapped <strong>SPOT5 </strong>archive (2002−2015), the <strong>lidar </strong>data, the <strong>Pléiades </strong>imagery (2011−present), <strong>aerial photographs</strong> from 1999 [1] and the <strong>ArcticDEM </strong>dataset (2010−2019) [2] were used to create Digital Elevation Models (DEMs) of the ice cap. A pre-processing of the DEMs was first performed: co-registration, filtering and interpolation. Then, applying a <strong>Gaussian Process regression</strong> (GP) [3], a state-of-the-art method in DEM processing, a spatially and temporally continuous DEM dataset was created, in 15 x 15 m resolution and 1-month interval from 1999 to 2021. <strong>Volume and mass changes</strong> based on the synthetic GP-generated DEMs were computed and analyzed in 5-year and annual intervals between 1999 and 2019. A local analysis of three glacierized catchments of Mýrdalsjökull (southern catchment, northern catchment and Kötlujökull outlet) was also performed. Errors were estimated using the method from [4]. Tools from the following repositories were used:</p> <ul> <li> <p><em>demcoreg </em>(<a href="https://doi.org/10.5281/zenodo.5733347">https://doi.org/10.5281/zenodo.5733347</a>): DEM co-registration</p> </li> <li> <p><em>xdem </em>(<a href="https://doi.org/10.5281/zenodo.4809698">https://doi.org/10.5281/zenodo.4809698</a>): uncertainties computation and DEM manipulation </p> </li> <li> <p><em>pyddem </em>(<a href="https://pypi.org/project/pyddem/">https://pypi.org/project/pyddem/</a>): Gaussian Process regression</p> </li> </ul> <p>The complete master thesis can be accessed at :</p> <p> </p> <p>The repository contains the following data:</p> <p><strong>1</strong> – <strong>DEM_coregistered</strong></p> <p>All DEMs have been coregistered considering the Islandsdem v1.0 as a reference (atlas.lmi.is/dem)</p> <p>The DEM naming works as follow: </p> <p><em>Glaciername_DEM_date_sensor_resolution_zmae_projection_otherinformation.tif</em></p> <p>The files ending with <strong>*_filtered.tif</strong> (SPOT5, AerialPhotographs) have been filtered using the filtering combination described in 3.1.3.</p> <p>The files ending with<strong> *_mosaic.tif</strong> (SPOT5, Pléiades) are the result of the mosaicking of several DEMs.</p> <p> </p> <p><strong>2</strong> – <strong>Shapefiles</strong></p> <p>Outlines of Mýrdalsjökull in 1999 [1], 2003, 2010 and 2019 [6]</p> <p>Outlines of the three catchments (South, North and Kötlujökull) in 1999.</p> <p>Reference buffer around Mýrdalsjökull used to crop all DEMs to the same extent. </p> <p>Equilibrium Line Altitude (ELA) from 2004-10-05.</p> <p> </p> <p><strong>3</strong> – <strong>Gaussian_Process_regression</strong></p> <p>2 netcdf files: the stack of DEMs (<strong>*_DEMstack_*</strong>) and the result of the Gaussian Process regression (<strong>*_GPregression_*</strong>).</p> <p>Both files were obtained thanks to <em>pyddem </em>tools.</p> <p>The Gaussian Process regression was run at a spatial resolution of 15 x 15m and a temporal resolution of 1 month, starting in January 1999 and ending in December 2022.</p> <p> </p> <p><strong>4</strong> – <strong>Mass_balance_results</strong></p> <p>1 csv file containing mass balance results:</p> <ul> <li> <p>Annual mass balance for the ice cap & the 3 catchments</p> </li> <li> <p>4-year mass balance for the ice cap & the 3 catchments</p> </li> <li> <p>Results from the comparison with survey dates mass balance (Fig 11(a))</p> </li> <li> <p>Results from the comparison with [3] (Fig 11(b))</p> </li> <li> <p>Mass balance overview (Fig 11(c))</p> </li> </ul> <p> </p> <p><strong>References</strong></p> <p>[1] Belart, J., Magnússon, E., Berthier, E., Gunnlaugsson, Á. Þ., Pálsson, F., Aðalgeirsdóttir, G., Jóhannesson, T., Thorsteinsson, T., and Björnsson, H. (2020). Mass balance of 14 Icelandic glaciers, 19452017: spatial variations and links with climate. Frontiers in Earth Science, page 163.</p> <p>[2] Porter, C., Morin, P., Howat, I., Noh, M., Bates, B., Peterman, K., Keesey, S., Schlenk, M., Gardiner, J., et al. (2018). ArcticDEM. Harvard Dataverse, 1.</p> <p>[3] Hugonnet, R., McNabb, R., Berthier, E., Menounos, B., Nuth, C., Girod, L., Farinotti, D., Huss, M., Dussaillant, I., Brun, F., et al. (2021). Accelerated global glacier mass loss in the early twenty-first century. Nature, 592(7856):726731.</p> <p>[4] Hugonnet, R., Brun, F., Berthier, E., Dehecq, A., Mannerfelt, E. S., Eckert, N., and Farinotti, D. (2022). Uncertainty analysis of digital elevation models by spatial inference from stable terrain. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.</p> <p>[5] Hannesdóttir, H., Sigurðsson, O., Þrastarson, R. H., Guðmundsson, S., Belart, J. M., Pálsson, F., Magnússon, E., Víkingsson, S., Kaldal, I., and Jóhannesson, T. (2020). A national glacier inventory and variations in glacier extent in Iceland from the Little Ice Age maximum to 2019. Jökull 2020: 1, 34.</p> <p> </p> <p><strong>Acknowledgements</strong></p> <p>Pléiades images were acquired at research price thanks to the CNES ISIS programme (http://www.isiscnes.fr). This study uses the lidar mapping of the glaciers in Iceland, funded by the Icelandic Research Fund, the Landsvirkjun research fund, the Icelandic Road Administration, the Reykjavík Energy Environmental and Energy Research Fund, the Klima- og Luftgruppen research fund of the Nordic Council of Ministers, the Vatnajökull National Park, the organization Friends of Vatnajökull, LMÍ, IMO, and the UI research fund.</p> <p> </p> <p><strong>Dataset Attribution</strong> </p> <p>This dataset is licensed under a <a href="https://creativecommons.org/licenses/by-nc/4.0/">Creative Commons CC BY-NC 4.0 International License</a> (Attribution-NonCommercial).</p>
Cap d'home, Md'A
**CAT** Aquest cap d'home, esculpit en marbre, és un petit fragment del programa escultòric de la portalada romànica del monestir de Sant Pere de Rodes, del segle XII. Atribuït a l'escultor o taller del Mestre de Cabestany, és un dels pocs elements conservats, i avui s'exposa al Museu d'Art de Girona. **ES** Esta cabeza masculina, esculpida en mármol, es un pequeño fragmento del programa escultórico de la portada románica del monasterio de Sant Pere de Rodes, del siglo XII. Atribuido al escultor o taller del Maestro de Cabestany, es uno de los pocos elementos conservados, y hoy se expone en el Museu d'Art de Girona. **EN** This marble sculpture of a man's head is a remnant of the 12th-century Romanesque portal of the monastery of Sant Pere de Rodes. Along with a handful of other pieces, it is believed to be the work of an artist known only as the "Master of Cabestany" (or, perhaps, of his workshop). It is now on display at the Girona Art Museum. Model: Laia Tubio. Textos: Carme Clusellas. Source: Objaverse 1.0 / Sketchfab
Wmid-60179b - Zoomorphic knife end cap
A complete copper alloy zoomorphic knife end cap, of Post Medieval dating (AD 1500 to AD 1600). The cap takes the form of a stylised animal head, probably a dog.. It is sub-oval in cross section. The terminal consists of an elongated head with an up-turned snout. The mouth is indicated by incised grooves and the eyes are represented by small circular punch marks. Ears are marked on either side as small circular depressions. The top of the head is grooved. There is a diagonal groove on both faces that extend from the back of the head at the top to the front under the chin. At the base a longitudinal groove is filled with the remnants of an iron tang. For more information, please visit the online database recorded available at https://finds.org.uk/database/artefacts/record/id/1056562. Source: Objaverse 1.0 / Sketchfab
Cap de negre, Museu d'Art Modern de Tarragona
**CAT** Cap escultòric obra de Salvador Martorell i Oller (la Canonja, 1895 – Tarragona 1968), fet en pedra de la Sénia, l'any 1917. **ES** Cabeza escultórica obra de Salvador Martorell y Oller (la Canonja, 1895 – Tarragona 1968), hecha en piedra de la Sénia, en el año 1917. **EN** Sculpture of a head by Salvador Martorell i Oller (La Canonja, 1895 – Tarragona, 1968) made of stone from La Sénia in 1917. Número de registre: MAMT NIG 3095. [Adreça web >](https://dipta.cat/mamt/colleccio/obres/cap-de-negre) Fotografies: Jaime Salguero. Processat: Néstor Marqués. Text: Àlex Rebollo Source: Objaverse 1.0 / Sketchfab
Кепка рабочая • Working Cap
1949–1953 22 x 25 x 5 cm Найдена на месте одного из лагерей, где заключенные занимались строительством железной дороги "Салехард–Игарка" (т.н. Мертвая Дорога), ветки, идущей со стороны Игарки, в районе поселка Ермаково. Экспедиция была организована Музеем вечной мерзлоты (Игарка) до 2002 г. The cap was found at the territory of one of the former labor camps, were the inmates were involved into the construction of the Salekhard – Igarka railroad (so called Dead Road), the rail line incoming from Igarka, near Ermakovo village. The expedition was organised by the Igarka Museum of Permafrost before 2002. Source: Objaverse 1.0 / Sketchfab
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