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193 results for “363”
Trento 1851 - Building 363
<u>Coordinates</u>: N/A <br><u>Length</u>: 8.71 m<br><u>Width</u>: 13.38 m<br><u>Height</u>: 18.5 m<br><u>Points</u>: 8 <br><u>Vertices</u>: 36 <br><u>Primitives</u>: 12 <br><br><u>Main Files:</u><br><table><tbody><tr><th>Filename</th><th>.glb</th><th>.obj</th><th>.xml</th></tr><tr><td><a href="https://zenodo.org/api/records/12687434/files/building_363.glb/content">building_363.glb</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363.glb/content">Link</a></td><td></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12687434/files/building_363.obj/content">building_363.obj</a></td><td></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363.obj/content">Link</a></td><td></td></tr><tr><td><a href="https://zenodo.org/api/records/12687434/files/11565131_edm.xml/content">11565131_edm.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12687434/files/11565131_edm.xml/content">Link</a></td></tr><tr><td><a href="https://zenodo.org/api/records/12687434/files/11565131_metsmods.xml/content">11565131_metsmods.xml</a></td><td></td><td></td><td><a href="https://zenodo.org/api/records/12687434/files/11565131_metsmods.xml/content">Link</a></td></tr></tbody></table><br><br><u>Thumbnails:</u><br><table><tbody><tr><th>Perspective</th><th>1000x1000</th><th>512x512</th><th>256x256</th><th>128x128</th></tr><tr><td>Perspective 1</td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_1.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_1_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_1_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_1_128x128.png/content">Link</a></td></tr><tr><td>Perspective 2</td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_2.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_2_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_2_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_2_128x128.png/content">Link</a></td></tr><tr><td>Perspective 3</td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_3.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_3_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_3_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_3_128x128.png/content">Link</a></td></tr><tr><td>Perspective 4</td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_4.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_4_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_4_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_4_128x128.png/content">Link</a></td></tr><tr><td>Perspective Top</td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_top.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_top_512x512.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_top_256x256.png/content">Link</a></td><td><a href="https://zenodo.org/api/records/12687434/files/building_363_perspective_top_128x128.png/content">Link</a></td></tr></tbody></table><br><br><br><u>Changelog</u>: <br> - v<a href="https://doi.org/10.5281/zenodo.12532693">0.0.2</a>: Thumbnails added, Description updated with Link Tables.<br> - v<a href="https://doi.org/10.5281/zenodo.12687434">0.0.3</a>: Added XMLs for Europeana Data Model (EDM) and MetsMods.<br>
FIGURES 363–366 in Studies on the Australian Muscidae (Diptera). VIII. The genus Lispe Latreille, 1797
FIGURES 363–366. Lispe sp. nov., ♂. 363. Sternites 1–5. 364. Sternite 5, posterior view showing sternite 6 and the two plates. 365. Hypopygium, lateral view. 366. Cercal plate, dorsal view, with a dark line fusing the two halves. (WA, 4 km SSW of Cape Bertholet.)
finals_2019_07_363
Log and boot files of game 363
FIGURES 356−363 in The Luciolinae of S. E. Asia and the Australopacific region: a revisionary checklist (Coleoptera: Lampyridae) including description of three new genera and 13 new species
FIGURES 356−363. Pygoluciola abscondita comb. nov. males. (syntype series of males of Luciola abscondita). 356, 358 habitus dorsal; 357 habitus ventral (after soaking for an hour in soapy water); 359−361 aedeagus: 359 ventral; 360 dorsal; 361 right lateral (horizontal arrow indicates membranous apical area of LL; vertical arrow indicates sausage shaped lobe of LL); 362 aedeagal sheath apex of sheath sternite only; 363 abdomen dorsal. Scale lines are 1 mm.
Pulleniatina obliquiloculata stable oxygen isotope and Mg/Ca ratios record from IODP Core 363-U1483
<p><span>We carry out our work on a total of 202 sediment samples spanning the past ~400 kyr from IODP Core 363-U1483 (13.09°S, 121.80°E; water depth: 1733 m), which was recovered at the Timor Sea in the outflow area of the Indonesian Throughflow. In this study, we present Mg/Ca ratios and stable oxygen isotope from tests of planktonic foraminiferal Pulleniatina obliquiloculata, respectively.</span></p>
FIGURES 363–370 in Systematics of Robustagramma, a new genus of New World Sphaeroceridae (Diptera)
FIGURES 363–370. Robustagramma spp. wings (not to scale): 363, R. atratum sp. nov.; 364, R. lingulatum sp. nov.; 365, R. setilamella sp. nov.; 366, R. robustinervus sp. nov.; 367, R. binitidum sp. nov.; 368, R. macrosternum sp. nov.; 369, R. longistylum sp. nov.; 370, R. hebes sp. nov.
FIGURES 363–370 in Structural characterization of the type III pilotin-secretin interaction in Shigella flexneri by NMR spectroscopy
FIGURES 363–370. Female genitalia of Geometridae. 363. Nearcha curtaria, 364. Acalyphes philorites, 365. Acalyphes sp., 366. Archiearides fidonioides, 367. Dirce aesiodora, 368. Dirce lunaris, 369. Dirce sp, 370. Dirce oriplancta, 371. Dirce solaris.
FIGURES 363–374. Figures 363–368 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 363–374. Figures 363–368: Amauromyza (A.) leonuri Spencer; 363: cephalopharyngeal skeleton; 364: frontal view of head; 365: head viewed from the side; 366: wing; 367: spermatheca; 368: proctiger. Figures 369–374: A. (A.) stachysi spec. nov.; 369: cephalopharyngeal skeleton; 370: frontal view of head; 371: head viewed from the side; 372: wing; 373: spermatheca; 374: proctiger.
FIGURES 363–366. 363–364, 366 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 363–366. 363–364, 366. Mallinella hamata, paratype (BMNH). 365. M. dumogabonensis, paratype (BMNH). 363–365. Habitus, dorsal. 366. Ditto, ventral.
FIGURES 352–363 in Review of Centroptella Braasch & Soldán 1980 (Ephemeroptera, Baetidae)
FIGURES 352–363. Centroptella (Crassolus) ludmilae sp. n., exuviae of larval legs. 352, fore femur; 353, seta on outer side of femur; 354–355, claws; 356–358, fore, middle and hind legs; 359–361, fore, middle and hind tibiae (focus on posterior side); 362, stout setae on proximal part of inner-anterior side of fore femur; 363, the same on hind femur.
Globigerinoides ruber stable oxygen isotope and Mg/Ca ratios record from IODP Core 363-U1483
<p>We carry out our work on a total of 202 sediment samples spanning the past ~400 kyr from IODP Core 363-U1483 (13.09°S, 121.80°E; water depth: 1733 m), which is located close to the southern margin of the ITCZ's latitudinal displacement in the outflow area of the Indonesian Throughflow. In this study, we present Mg/Ca ratios and stable oxygen isotope from tests of planktonic foraminiferal Globigerinoides ruber, respectively.</p>
Abb. 80-94 in Neue und alte Stenus-Arten der abdominalis-Gruppe (Coleoptera, Staphylinidae) 363. Beitrag zur Kenntnis der Steninen
Abb. 80-94: Apikalpartie des Medianlobus von Stenus abdominalis FAUVEL (Phongsaly, 80), S. biplagiatus PUTHZ (HT, 81), S. lopchuensis CAMERON (82, Ruby Mines), S. abjugans nov.sp. (HT 83), S. peraffinis FAUVEL (Myanmar, 84), S. absimilis nov.sp. (HT, 85), S. languor L. BENICK (Kashmir, 86), S. abductus nov.sp. (HT, 87), S. bicolon bicolon SHARP (PLT, 88; Taiwan, 89; Thailand, 90; Yunnan, 91), S. bicolon posticus BERNHAUER (Laos, 92; Java, 93; Lombok, 94). Massstab = 0,1mm
Abb. 16-31 in Neue und alte Stenus-Arten der abdominalis-Gruppe (Coleoptera, Staphylinidae) 363. Beitrag zur Kenntnis der Steninen
Abb. 16-31: Pronoten (16-20), 7. Tergit (21, 23-25, 27-30) und 7. Sternit (22, 26, 31) von Stenus abductus nov.sp. (HT, 16, 29), S. abjugans nov.sp. (HT, 17, 30, 31), S. abnormis nov.sp. (HT, 18), S. absconsor nov.sp. (HT, 19), S. absimilis nov.sp. (HT, 20), S. abactor nov.sp. (PT, 21, 22), S. abarcens nov.sp. (HT, 23), S. abbreviator nov.sp. (HT, 24), S. abditivus nov.sp. (HT, 25, 26), S. abditus nov.sp. (HT, 27), S. abdominalis FAUVEL (Phongsaly, 28).
Abb. 1-15 in Neue und alte Stenus-Arten der abdominalis-Gruppe (Coleoptera, Staphylinidae) 363. Beitrag zur Kenntnis der Steninen
Abb. 1-15: Köpfe und Pronoten von Stenus abactor nov.sp. (PT, 1, 11, Diding), S. abarcens nov.sp. (HT, 2, 12), S. abbreviator nov.sp. (HT, 3, 13), S. abditivus nov.sp. (HT, 4, 14), S. abditus nov.sp. (HT, 5, 15), S. abductus nov.sp. (HT, 6), S. abjugans nov.sp. (HT, 7), S. abnormis nov.sp. (HT, 8), S. absconsor nov.sp. (HT, 9), S. absimilis nov.sp. (HT, 10).
Figure 5 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 5 Docking interaction and binding mode of palmatine and alpha-amylase enzyme. The π-π staked interactions are presented in magenta dotted lines.
Figure 8 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 8 Docking interaction and binding mode of sitagliptin and DPP-IV enzyme. The hydrogen bonds are presented in green dotted lines, the π-π staked interactions are presented in magenta dotted lines and the π-alkyl interactions are presented in pink dotted lines.
Figure 4 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 4 Docking interaction and binding mode of acarbose and alpha-amylase enzyme. The hydrogen bonds are presented in green dotted lines.
Figure 7 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 7 Docking interaction and binding mode of palmatine and alpha-glucosidase enzyme. The hydrogen bonds are presented in green dotted lines and the π-alkyl interactions are presented in pink dotted lines.
Figure 2 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 2 Alpha-glucosidase enzyme inhibting activity ((IC50(µM) of palmatine, glimepiride, metformin and standard drug(acarbose). The result are shown as Mean ± standard deviation in triplicates (n = 3). The data were statistically analyzed by One-way ANOVA followed by Dunnet's post hoc test. Graph showed that acarbose(a) vs. glimepiride = p < 0.0001 = d; acarbose vs. metformin = p < 0.0001 = d; acarbose vs. palmatine = p < 0.0001 = d. Glimepiride vs. metformin = No significant = d, glimepiride vs. palmatine = No significant = d and metformin vs. palmatine = No significant = d.
Figure 1 from: Okechukwu P, Sharma M, Tan WH, Chan HK, Chirara K, Gaurav A, Al-Nema M (2020) In-vitro antidiabetic activity and in-silico studies of the binding energies of palmatine and the standard compounds with the three receptors of alpha amylase, alpha glucosidase, and DPP-IV enzyme. Pharmacia 67(4): 363-371. https://doi.org/10.3897/pharmacia.67.e58392
Figure 1 Alpha-amylase enzyme inhibting activity (IC50(µM) of palmatine, glimepiride, metformin and standard drug(acarbose). The result are shown as Mean ± standard deviation in triplicates (n = 3). The data were statistically analyzed by One-way ANOVA followed by Dunnet's post hoc test. Graph showed that acarbose(a) vs. glimepiride = p < 0.001 = c; acarbose vs. metformin = p < 0.01 = b; acarbose vs. palmatine = p < 0.0001 = d. Glimepiride vs. Metformin = p < 0.001 = c, glimepiride vs. palmatine = p < 0.0001 = d, metformin vs. palmatine = p < 0.0001 = d.
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