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242 results for “385”
Figures 604-606 from: Zaifu X, Huayan C, van Achterberg K, He J (2014) A revision of the Chinese Trigonalyidae (Hymenoptera, Trigonalyoidea). ZooKeys 385: 1-207. https://doi.org/10.3897/zookeys.385.6560
Figures 604-606 - Teranishia glabrata sp. n., holotype, female. 604 Habitus lateral 605 head anterior 606 head dorsal.
Figures 385-393 from: van Achterberg K, Xi-Ying L, Tan J (2013) Revision of the subfamily Opiinae (Hymenoptera, Braconidae) from Hunan (China), including thirty-six new species and two new genera. ZooKeys 268: 1-186. https://doi.org/10.3897/zookeys.268.4071
Figures 385-393 - Xynobius notauliferus sp. n., female, holotype. 385 Wings 386 mesosoma dorsal 387 antenna 388 head anterior 389 propodeum and 1st-2nd metasomal tergites dorsal 390 mandible 391 base of hind tibia inner side 392 ovipositor sheath 393 hind leg.
Figure 4 from: Břízová R, Vaníčková L, Faťarová M, Ekesi S, Hoskovec M, Kalinová B (2015) Analyses of volatiles produced by the African fruit fly species complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 385-404. https://doi.org/10.3897/zookeys.540.9630
Figure 4 - The results of statistical analyses of the male-borne volatiles produced by Ceratitis fasciventris (blue), Ceratitis anonae (green) and Ceratitis rosa (red). (A) Multivariate principal component analysis (PCA) of the 22 common compounds identified in the pheromone of the males of the FAR complex. (B) Multivariate correspondence analysis (CA) of the 12 antennal active compounds. The three species are clearly segregated. Each symbol on the plot represents one sample. The numbers in italics denote the retention indices (RI) of the species-specific compounds. For the structural identification of the compounds see the Suppl. materials 1–3: Tables 1–3.
Figure 3 from: Břízová R, Vaníčková L, Faťarová M, Ekesi S, Hoskovec M, Kalinová B (2015) Analyses of volatiles produced by the African fruit fly species complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 385-404. https://doi.org/10.3897/zookeys.540.9630
Figure 3 - A comparison of female antennal responses of Ceratitis fasciventris, Ceratitis anonae, and Ceratitis rosa to standard solutions. The FID/EAD on the y-axis represents the ratio between an electroantennographic response and a conventional detector. The higher the number, the higher the response (N = 3).
Figure 2 from: Břízová R, Vaníčková L, Faťarová M, Ekesi S, Hoskovec M, Kalinová B (2015) Analyses of volatiles produced by the African fruit fly species complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 385-404. https://doi.org/10.3897/zookeys.540.9630
Figure 2 - GC-FID/EAD analyses of the Ceratitis fasciventris, Ceratitis anonae, and Ceratitis rosa male-borne volatiles using a conspecific female antenna as an EAD detector. The numbers indicate EAD-active compounds and correspond to Table 1. The symbols EAD-1-3 denote the three independent repetitions of the GC-EAD analyses.
Figure 1 from: Břízová R, Vaníčková L, Faťarová M, Ekesi S, Hoskovec M, Kalinová B (2015) Analyses of volatiles produced by the African fruit fly species complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 385-404. https://doi.org/10.3897/zookeys.540.9630
Figure 1 - GC×GC-TOFMS chromatograms (TIC mode) of the male (N = 5) volatiles of Ceratitis fasciventris, Ceratitis anonae and Ceratitis rosa. Each spot represents one compound; the identified compounds are numbered in each chromatogram, with the numbering corresponding to the respective Table 1 of compounds. The intensity of each spot is colour-coded (blue - 0, red - maximum).
IODP Expedition 385 P-wave velocity logger (whole round)
<p>P-wave velocity data were measured on whole-round sections on the Whole-Round Multisensor Logger (WRMSL) using pairs of piezoelectric transducers mounted on a caliper system. Measurements may be affected by degassing of pore fluid and microfracturing during core recovery. Report includes P-wave velocity in x-y plane and distance and traveltime between transducers.</p>
IODP Expedition 385 Bulk Density (GRA)
<p>Gamma ray attenuation (GRA) data were acquired using a Cs-137 collimated source and a sodium iodide (thallium), or NaI(Tl), scintillation detector. The signal was calibrated using water and aluminum standards to provide a proxy for bulk density. This measurement was performed by a sensor mounted on either the Whole-Round Multisensor Logger (WRMSL) or the Special Task Multisensor Logger (STMSL); which track was used for a given data set is indicated in the data.</p>
IODP Expedition 385 Sample report
<p>Report includes detailed information about samples taken for testing: location/depth, type/form factor, test, request number, and database identifier.</p>
IODP Expedition 385 Magnetic susceptibility (KappaBridge)
<p>Bulk magnetic susceptibility and anisotropy of magnetic susceptibility (AMS) were measured on discrete samples using an Agico KLY-4 KappaBridge susceptibility meter. Report includes individual and average principal susceptibilities, inclination and declination of principal susceptibilities, and volume-corrected bulk susceptibility.</p>
IODP Expedition 385 Vane shear strength (AVS)
<p>Shear strength was measured on section halves using a GEISA automated vane shear (AVS) frame and device controller. The device is suitable for sediment not affected by cementation (i.e., saturated, clay-rich, soft sediment). Shear strength measurements should be considered only approximate, particularly because the influence of pore pressure changes during the undrained experiment cannot be estimated. Report includes vane shear strength at the sample's failure point, maximum torque angle, penetration direction, and rate of vane rotation.</p>
IODP Expedition 385 Color reflectance
<p>Color reflectance data were measured on section halves using an integration sphere and a UV-VIS spectrophotometer mounted on the Section Half Multisensor Logger (SHMSL). Spectral counts are recorded in the range of 380 to 700 nm, covering the visible spectrum, and binned in ~2 nm bins. Spectral data are reduced from spectra and recorded in tristimulus XYZ values, CieLAB L*a*b* values, and other units.</p>
IODP Expedition 385 Formation temperature
<p>Formation temperature was measured by the advanced piston corer temperature tool (APCT-3), Sediment Temperature Tool (SET), or sediment temperature pressure tool (SETP) and reduced to in situ temperature and (for SETP) pressure estimates. These data are compiled per instrument run and assigned to a core (the core cut with the APCT-3 cutting shoe or the core following the SET deployment).</p>
finals_2021_385
Log and boot files of game 385
IODP Expedition 385 Salinity
<p>Salinity was measured on interstitial water (IW) samples using an optical refractometer.</p>
Plate 385 in Atlas of Brazilian Snakes: Verified Point-Locality Maps to Mitigate the Wallacean Shortfall in a Megadiverse Snake Fauna
Plate 385. Distribution map of Erythrolamprus semiaureus in relation to (A) South American Ecoregions (adapted from Olson et al., 2001) and (B) elevation. Red star indicates type-locality, if precisely located.
2022-08-27 09-03 Sächsische Schweiz 385 Dresden, Schlossstr.
<u>Source</u>: Flickr <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1665335672.4158.jpg">https://4dcity.org/imgupload/1665335672.4158.jpg</a> <br><u>Original Image URL</u>: <a href="https://live.staticflickr.com/65535/52389468072_e787fcb88f_m.jpg">https://live.staticflickr.com/65535/52389468072_e787fcb88f_m.jpg</a> <br><br><u>Image-Metadata:</u><br>Filename: 1665335672.4158.jpg<br>Image Dimensions: 155x240<br>Megapixels: 0.04 MP<br>Filesize: 18.94 KB<br><br>Copyright: Allie Caulfield<br>ExifOffset: 94<br>Artist: Allie Caulfield
K ZY 385
<u>Source</u>: Flickr <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1665393236.3514.jpg">https://4dcity.org/imgupload/1665393236.3514.jpg</a> <br><u>Original Image URL</u>: <a href="https://live.staticflickr.com/65535/52050549837_643393ecc3_m.jpg">https://live.staticflickr.com/65535/52050549837_643393ecc3_m.jpg</a> <br><br><u>Image-Metadata:</u><br>Filename: 1665393236.3514.jpg<br>Image Dimensions: 240x160<br>Megapixels: 0.04 MP<br>Filesize: 22.11 KB<br><br>Copyright: © [stripped personal information]<br>ExifOffset: 108<br>Artist: Marcus Ogrzall
FIGURES 385–386. Habitat. 385–386 in Revision of the genus Bioramix Bates, 1879 (Coleoptera: Tenebrionidae: Platyscelidini) from China
FIGURES 385–386. Habitat. 385–386. Bioramix rufipalpis in Hoh Xil, Qinghai, China.
385 Solidity Smart Contracts for Solidity release 0.5
<p>385 Solidity Smart Contracts extracted from Etherscan. The Solidity release is the 0.5. </p> <p>Files are extracted from a Java crawler. </p>
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