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634 results for “KING”
NWC02 Stream water conductivity for the king's creek drainage basin on Konza Prarie
Conductivity was monitored in four streams draining watersheds with 1 (N01B), 2 (N02B), 4 (N04D), and 20 (N20B) year target burn frequencies. Bison grazed these treatments since May 1992. Early samples were preserved with phenyl mercuric acetate.
Leopold King (k1724)
<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Leopold King<br><u>musiXplora-ID</u>: k1724<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/k1724">https://musixplora.de/mxp/k1724</a><br><u>Gender</u>: m<br><u>Date of Birth</u>: 1896<br><u>Place of Birth</u>: Waldkirch<br><u>Date of Death</u>: 1978<br><u>Place of Death</u>: Aschaffenburg<br><u>First Mentioned</u>: 1919<br><u>Sectors</u>: Instrumentenbau, Kirche<br><u>Professions (Musical)</u>: Orgelbauer<br><u>Main Place of Activity</u>: Aschaffenburg<br><u>Other Places of Activity</u>: Leipzig<br><br><br><u>Institutionen:</u><br><table><tbody><tr><th>Role</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Philipps AG</td><td><a href="https://musixplora.de/mxp/3030160">3030160</a></td></tr></tbody></table><br><u>Titel/Medien:</u><br><table><tbody><tr><th>Role</th><th>Sigel</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Bernhard 2003a</td><td>Orgeldatenbank Bayern</td><td><a href="https://musixplora.de/mxp/5001131">5001131</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br> - v0.0.1: Initial Upload.<br>
King Louie: DBMS Availability Evaluation Data Sets
<p>These data sets provide all availability measurements as accompanying material for the research paper <strong><em>King</em> </strong><em><strong>Louie: Reproducible Availability Benchmarking of Cloud-hosted DBMS</strong> </em>that is presented in the 35th ACM/SIGAPP Symposium on Applied Computing (SAC ’20), March 30-April 3, 2020, Brno, Czech Republic.</p> <p> </p> <p> </p>
IN00101 Khurā Inscription of the Hūṇa king Toramāṇa
<p><a href="https://siddham.network/inscription/in00101/">IN00101 </a>Khurā Inscription of the <a href="https://en.wikipedia.org/wiki/Alchon_Huns">Hūṇa</a> king Toramāṇa recording the establishment of a <em>vihāra</em> of the <a href="https://en.wikipedia.org/wiki/Mah%C4%AB%C5%9B%C4%81saka">Mahīśāsaka</a> school.</p>
Gupta polity as a circle of kings or rājamaṇḍala.
<p>Gupta polity as a circle of kings or <em>rājamaṇḍala</em> combining data from the <a href="https://siddham.network/object/ob00001/">Allahābād Pillar inscription</a> with the model set out in the <em>Arthaśāstra.</em></p>
Map. Samudragupta's conquest of the kings in Āryāvarta as recounted in the Allahābād Pillar inscription.
<p>Map. Samudragupta's conquest of the kings in Āryāvarta as recounted in the <a href="https://siddham.network/object/ob00001/">Allahābād Pillar inscription</a>.</p>
[DEPRECATED] CFC01 Kings Creek long-term fish and crayfish community sampling at Konza Prairie (Reformatted to ecocomDP Design Pattern)
This data package has been deprecated due to several issues in the L0 source dataset that prohibits the creation of an L1 ecocomDP dataset. This data package is formatted according to the "ecocomDP", a data package design pattern for ecological community surveys, and data from studies of composition and biodiversity. For more information on the ecocomDP project see https://github.com/EDIorg/ecocomDP/tree/master, or contact EDI https://environmentaldatainitiative.org. This Level 1 data package was derived from the Level 0 data package found here: https://portal.edirepository.org/nis/mapbrowse?scope=knb-lter-knz&identifier=130&revision=4 The abstract below was extracted from the Level 0 data package and is included for context:
ASD01 Stream discharge for Kings Creek measured at USGS gaging station
The 1060 hectacre Kings Creek watershed (STATION NUMBER 06879650) is a U.S. Geological survey hydrologic benchmark. (cf. Cobb, e.D. and J.E. Beisecker. 1971. USGS circular 460-d) flow is measured continuously with a bubble gage. The period of record started in March, 1979. The hydrologic regime is driven by the mid-continent climate characterized by summer thunderstorms and drought. The stream, at the gaging station, is fourth order in gallery forest. The riparian vegetation in the headwaters (1st & 2nd order) is tallgrass, or true, prairie. Flow occurred in spring and early summer in all years. Late summer, fall and winter records also include periods of no flow, the longest of these was ca. nine months. The time from base flow to peak flow for typical storm flow hydrographs is an hour or so and amplitude of ca. three meters above base flow has been recorded (Data comes from USGS office in Lawrence, Kansas; Contact person:Butch Lawcock, (913) 842-9709). Organization: U.S. Geological Survey For more metadata description and data, please see:https://waterdata.usgs.gov/nwis/uv/?site_no=06879650
FIG. 15 in Food worthy of kings and saints: fish consumption in the medieval monastery Studenica (Serbia)
FIG. 15. — Sturgeon fishing at the exit of the Danube Gorges, cover of the fourth volume (De Piscibus in Aquis Danubii Viventibus) of L. F. Marsigli's Danubius Pannonico-Mysicus (Marsigli 1726).
FIG. 6 in Food worthy of kings and saints: fish consumption in the medieval monastery Studenica (Serbia)
FIG. 6. — The distribution of mammal, bird and fish remains from medieval contexts at Studenica Monastery (after Marković 2015: 396, fig. 1).
FIG. 4. — Fishing with net from a in Food worthy of kings and saints: fish consumption in the medieval monastery Studenica (Serbia)
FIG. 4. — Fishing with net from a boat, detail of the 13th century fresco from Mileševa Monastery (courtesy of the BLAGO Fund).
FIG. 3 in Food worthy of kings and saints: fish consumption in the medieval monastery Studenica (Serbia)
FIG. 3. — Representation of various fish species, detail of the 14th century fresco from Gračanica Monastery (courtesy of the BLAGO Fund).
Figure 3 in A king-sized theropod coprolite
Figure 3 Photomicrograph of a thin section of the theropod coprolite, showing associated bone fragments that indicate digestive degradation. Digestive acids and enzymes probably infiltrated the interior of the bone through vascular canals. Scale bar, 100 m.
OB00609 Copper-plate charter of the Maitraka king Siladitya (plate 2).
<p>OB00609 Copper plate charter of the Maitraka king Śīlāditya I, dated year 290 [?] aśvayuja badi 10 recording a donation of villages and lands; first of two plates (OB00609 a-b) joined with a metal ring (OB00609c).</p>
OB00609 Copper-plate charter of the Maitraka king Siladitya (plate 1).
<p>OB00609 Copper plate charter of the Maitraka king Śīlāditya I, dated year 290 [?] aśvayuja badi 10 recording a donation of villages and lands; first of two plates (OB00609 a-b) joined with a metal ring (OB00609c).</p>
Figure 2. – A in First record of Carolines parrotfish (Calotomus carolinus) and king angelfish (Holacanthus passer) around the Clipperton Atoll-La Passion Island (North-Eastern Tropical Pacific)
Figure 2. – A: Photograph of the female adult individual of Calotomus carolinus with a close up showing the details of the separated teeth (B), that are specific to this species (Photos E. Clua). C: Photograph of the juvenile individual of Holacanthus passer (Photo S. Planes) along with an adult individual (D) (Photo H. Debelius) in its natural environment, showing the specific vertical white stripe, which is present both in adult and juvenile individuals.
Figure 1. – A in First record of Carolines parrotfish (Calotomus carolinus) and king angelfish (Holacanthus passer) around the Clipperton Atoll-La Passion Island (North-Eastern Tropical Pacific)
Figure 1. – A: Clipperton-La Passion Island (France), Tropical Eastern Pacific Ocean. B: Approximative location of the sighting and capture of the adult female individual of Calotomus carolinus (X) and the sighting of the male individual (X') on the 11 and 13 August 2018, respectively. Approximative location of the sighting and capture of the juvenile individual of Holacanthus passer (Y) (maps modified from "Cartes de l'île de la Passion" by C. Jost, 2015).
→ Fig. 10. FESEM images of the test structure in lagenid foraminifers from Recent, Admiralty Bay, King George Island, West Antarctica (A) and from the Jurassic of Gnaszyn, Poland (B, C). A. Unilocular Procerolagena gracilis Williamson, 1848, MWGUW ZI/67/44/02. B. Unilocular Lagena globosa Montagu, 1803, MWGUW ZI/67/61/09. C. Uniserial Nodosaria pulchra Franke, 1936, MWGUW ZI/67/61/26. Oblique cross-sectional views (A1, A2, A4, B1, B2, C); transverse cross-sectional views, showing single-crystal interlocked bundle structures, inner pores which extend along the entire length of the bundles as well as prominent calcite cleavage (A3, B3). Abbreviations: c, prominent calcite cleavage; ip, inner pore. in Chamber arrangement versus wall structure in the high-rank phylogenetic classification of Foraminifera
→ Fig. 10. FESEM images of the test structure in lagenid foraminifers from Recent, Admiralty Bay, King George Island, West Antarctica (A) and from the Jurassic of Gnaszyn, Poland (B, C). A. Unilocular Procerolagena gracilis Williamson, 1848, MWGUW ZI/67/44/02. B. Unilocular Lagena globosa Montagu, 1803, MWGUW ZI/67/61/09. C. Uniserial Nodosaria pulchra Franke, 1936, MWGUW ZI/67/61/26. Oblique cross-sectional views (A1, A2, A4, B1, B2, C); transverse cross-sectional views, showing single-crystal interlocked bundle structures, inner pores which extend along the entire length of the bundles as well as prominent calcite cleavage (A3, B3). Abbreviations: c, prominent calcite cleavage; ip, inner pore.
Figures 113–118 in Revisiting Potter Cove, King George Island, Antarctica, 12 years later: new observations of marine benthic diatoms
Figures 113–118: SEM images of the marine benthic diatoms in Potter Cove, King George Island, Antarctica, summer 2015. (113, 114) Cocconeis orbicularis, external and internal faces of sternum valve. (115, 116) Fragilariopsis cylindrus, internal valve sides. (117) Entomoneis paludosa. (118) Nitzschia australis.
Figures 60–78 in Revisiting Potter Cove, King George Island, Antarctica, 12 years later: new observations of marine benthic diatoms
Figures 60–78: Marine benthic diatoms in Potter Cove, King George Island, Antarctica, summer 2015. (60, 61) Cocconeis antigua. (62) Diploneis smithii. (63) Diploneis weissflogii. (64) Diploneis sp. (65) Caloneis sp. (66, 67) Navicula cancellate. (68) Navicula directa. (69, 70) Navicula perminuta. (71) Navicula sp. (72, 73) Pseudogomphonema kamtchaticum. (74) Trachyneis aspera. (75, 76) Biremis ambigua. (77) Parlibellus crucicula. (78) Pinnularia quadratarea.
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OpenNeuro
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