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54 results for “ITO”
Light-driven reversible charge transfers from ITO Nanocrystals
<p>Absorption spectra including ferrocene and ITO mix, both in ground state and photodoped.</p> <p>Includes reference absorption spectra of compounds/nanoparticles alone, and absorption spectra from solvents used.</p>
Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443. in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk
Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443.
Dataset: iTeos Therapeutics, Inc. (ITOS) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset of the paper "Numerical Study of the Optical Response of ITO-In2O3 Core-Shell Nanocrystals for Multispectral Electromagnetic Shielding"
<p>This dataset provides the raw data of the paper "Numerical Study of the Optical Response of ITO-In2O3 Core-Shell Nanocrystals for Multispectral Electromagnetic Shielding"</p>
Light-driven reversible charge transfers from ITO Nanocrystals
<p>Complete dataset, comprising:</p> <p>- absorption spectra data, for all redox compounds tested and reference solutions and solvents.</p> <p>- TEM images of nanoparticles used</p> <p>- diffraction pattern of nanoparticles used</p>
FIGURE 1. A–B in An opinion on the genus Fujiscon Ito, 1991 (Eutardigrada, Hypsibiidae)
FIGURE 1. A–B, Claws of the third pairs of legs (A) and of the fourth pair of legs (B) of Acutuncus antarcticus (Richters). The septum between the basal portion and the secondary branch of the claw (arrow) appear more or less developed in relation with the dimensions of the internal cavities of the claws. C, Claws of the fourth pair of legs of Diphascon cfr. nobilei (Binda). In one of the internal claws the septum between the basal portion and the secondary branch is well visible (arrow), in the other slightly visible. D–G, Claws of Isohypsibius elegans Binda & Pilato. D, Claws of the fourth pair of legs. In one of the internal claws the septum between the basal portion and the secondary branch is well visible (arrow), in the other is slightly visible. E–F, Claws of the first pair of legs (E) and of the second pair (F) of the same specimen. In one of the internal claws (E on the left) the septum between the basal portion and the secondary branch of the claw is absent, in the other claws it is well visible (particularly in F) (arrow). G, claws of the second pair of legs; in the internal claw the septum between the basal portion and the secondary branch is absent, in the external claws it is slightly visible.
FIGURE 1. Microptila orienthula Kjaerandsen & Ito 2009 in The genus Microptila Ris (Trichoptera, Hydroptilidae) in Japan
FIGURE 1. Microptila orienthula Kjaerandsen & Ito 2009 male and female; type specimens (1A–1E, 1G, 1H), type locality (F), Shizuoka (I), Yakushima (J). Male (1A–1G): 1A, head and thorax, dorsal; 1B, genitalia, left lateral; 1C, same, dorsal; 1D, same, ventral; 1E, subgenital plate, dorsal; 1F, right inferior appendage, ventromesal; 1G, phallus, left lateral. Female (1H–1J): 1H, abdominal segments VII–X, ventral; 1I and 1J, abdominal segment VII, ventral, variation. Abbreviations: VII–X = abdominal segments VII–X; inf app = inferior appendage (paired); ph = phallus; sg plate = subgenital plate; ti = titillator; t X = tergite X.
FIGURE 3 in The larva of Microptila orienthula Kjaerandsen & Ito (Trichoptera, Hydroptilidae), with a description of its microhabitat in Japan
FIGURE 3. Habitat, larva, and case of Microptila orienthula. 3A, the hygropetric habitat in Akazawa, Shizuoka, Honshu, Japan; 3B, 3C, microhabitat of M. orienthula (plant clusters enclosed by oval lines); 3D, case (left) and larva in case (right), left lateral; 3E, larva, left lateral.
FIGURE 2 in The larva of Microptila orienthula Kjaerandsen & Ito (Trichoptera, Hydroptilidae), with a description of its microhabitat in Japan
FIGURE 2. Final instar larva of Microptila orienthula. 2A, thorax and abdominal segments I, II, dorsal; 2B, right half of thorax, dorsal, showing hair-like spines; 2C, right trochantin and foreleg, right lateral; 2D, modified setae of right foretibia, right lateral; 2E, right pleuron and right midleg, right lateral; 2F, right pleuron and right hind leg, right lateral; 2G, abdominal segments IX–X, dorsal; 2H, right anal proleg and claw, right lateral.
Linear and Nonlinear refractive index of ITO(n&k)
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FIGURES 47–52. Trichotichnus doiinthanonensis Ito, 1997 in New data on carabid beetles of Trichotichnus s. str. (Coleoptera: Carabidae) of Yunnan (China) and adjacent areas, with description of six new species and two new subspecies
FIGURES 47–52. Trichotichnus doiinthanonensis Ito, 1997 (47–49, Yunnan, Xishuangbanna; 50–52, Yunnan, Dulongjiang). 47 & 50, terminal lamella of aedeagus; 48, 49, 51 & 52, median lobe of aedeagus. Dorsal (47, 49, 50 & 52) and lateral (48 & 51) views. Scale bars: A = 0.5 mm (47 & 50), B = 1.0 mm (48, 49, 51 & 52).
FIGURES 74–76. Trichotichnus spp., habitus. 74, T. subangulatus Ito, 2021 in New data on carabid beetles of Trichotichnus s. str. (Coleoptera: Carabidae) of Yunnan (China) and adjacent areas, with description of six new species and two new subspecies
FIGURES 74–76. Trichotichnus spp., habitus. 74, T. subangulatus Ito, 2021 (NNE Tengchong); 75. T.? subangulatus Ito, 2021 (S Longyuan); 76, T. noctuabundus Habu, 1954 (Vietnam). Scale bar = 1.0 mm.
FIGURES 77–86. Trichotichnus subangulatus Ito, 2021 in New data on carabid beetles of Trichotichnus s. str. (Coleoptera: Carabidae) of Yunnan (China) and adjacent areas, with description of six new species and two new subspecies
FIGURES 77–86. Trichotichnus subangulatus Ito, 2021 (77–79, 82 & 83, Yunnan; 80 & 81, Vietnam; 84–86, T.? subangulatus, Yunnan, Elidang Vill.); 77, 84, terminal lamella of aedeagus; 78–81, 85 & 86, median lobe of aedeagus; 82, gonocoxite; 83, laterotergite, gonosubcoxite, and gonocoxite. Dorsal (77, 79, 81, 84 & 86), lateral (78, 80, 82 & 85) and ventral (83) views. Scale bars: A = 0.5 mm (77, 82–84), B = 1.0 mm (78–81, 85 & 86).
Figure 3 from: Ito T, Yu C-C, Yokota M, Kokubugata G (2020) Sedum formosanum subsp. miyakojimense (Crassulaceae), a new subspecies from Miyako-jima Island of the Ryukyu Islands, Japan. PhytoKeys 148: 51-70. https://doi.org/10.3897/phytokeys.148.48957
Figure 3 Sedum formosanum subsp. miyakojimense (A–DT. Ito 2402, 2408, Miyako-jima Island of the Ryukyus, Japan) and S. formosanum subsp. formosanum (E Kume-jima Island of the Ryukyus, Japan. F, G NewTaipei City, Taiwan). A, B, E habit C, F flower D, G leaf. Scale bars: 1 mm (D–F).
Figure 4 from: Ito T, Yu C-C, Yokota M, Kokubugata G (2020) Sedum formosanum subsp. miyakojimense (Crassulaceae), a new subspecies from Miyako-jima Island of the Ryukyu Islands, Japan. PhytoKeys 148: 51-70. https://doi.org/10.3897/phytokeys.148.48957
Figure 4 Sedum formosanum subsp. miyakojimense. A flower B sepal C leaf, adaxial D leaf, abaxial E habit. Scale bars: 1 mm (A–D); 1 cm (E). Line drawings by Naomi Kizaki.
Figure 1 from: Ito T, Yu C-C, Yokota M, Kokubugata G (2020) Sedum formosanum subsp. miyakojimense (Crassulaceae), a new subspecies from Miyako-jima Island of the Ryukyu Islands, Japan. PhytoKeys 148: 51-70. https://doi.org/10.3897/phytokeys.148.48957
Figure 1 Map showing the location of Miyakojima Island and the adjacent area. The red circle indicates location of Miyako-jima Island. The gray circle indicates the others sample localities of S. formosanum (see Table 2 for abbreviations for collection localities).
Figure 2 from: Ito T, Yu C-C, Yokota M, Kokubugata G (2020) Sedum formosanum subsp. miyakojimense (Crassulaceae), a new subspecies from Miyako-jima Island of the Ryukyu Islands, Japan. PhytoKeys 148: 51-70. https://doi.org/10.3897/phytokeys.148.48957
Figure 2 Bayesian phylogenetic tree based on ITS sequences for Eastern Asian Sedum (A), and Bayesian phylogenetic tree based on cpDNA for sequences S. formosanum and its closely relatives (B). The topology of the maximum likelihood (ML) tree was highly compatible with the Bayesian tree. Bayesian posterior probabilities (PPs: left) and bootstrap percentages from ML analysis (BP: right) are shown (See Tables 1, 2 and 3 for the abbreviations of localities).
Figure 2 from: Yamane S, Hosoishi S, Ito F (2022) Japanese Tetramorium queens: identification key and species diagnoses (Hymenoptera, Formicidae, Myrmicinae). ZooKeys 1084: 43-64. https://doi.org/10.3897/zookeys.1084.69767
Figure 2 Japanese Tetramorium queens: habitus in profile view aT. bicarinatum (Nagashima, Kagoshima-ken, Kyushu) bT. cf. kraepelini (Itoman, Okinawa-jima, Okinawa-ken) cT. lanuginosum (Komi, Iriomote-jima, Okinawa-ken) dT. nipponense (Umi-jinja, Shikano-shima, Fukuoka-shi) eT. pacificum (Upper Thompson Nature Park, Singapore) fT. simillimum (Yoron-jima, Amami Is., Kagoshima-ken). (Same specimens were used for 'head in full-face view' and 'habitus in dorsal view').
Figure 1 from: Yamane S, Hosoishi S, Ito F (2022) Japanese Tetramorium queens: identification key and species diagnoses (Hymenoptera, Formicidae, Myrmicinae). ZooKeys 1084: 43-64. https://doi.org/10.3897/zookeys.1084.69767
Figure 1 Some important characters used in the key to species a–e petiole in profile view aT. pacificumbT. lanuginosumcT. bicarinatumdT. smithieT. tsushimaef–h anterior half of first gastral tergite fT. bicarinatumgT. simillimumhT. lanuginosumi–k antennal scape showing pilosity on its anterior margin l–n left hindtibia i, lT. cf. kraepelinij, mT. nipponensek, nT. simillimumo, p configuration of ocelli oT. tanakaipT. cf. kraepelini.
Figure 4 from: Yamane S, Hosoishi S, Ito F (2022) Japanese Tetramorium queens: identification key and species diagnoses (Hymenoptera, Formicidae, Myrmicinae). ZooKeys 1084: 43-64. https://doi.org/10.3897/zookeys.1084.69767
Figure 4 Japanese Tetramorium queens: head in full-face view aT. bicarinatumbT. cf. kraepelinicT. lanuginosumdT. nipponenseeT. pacificumfT. simillimumgT. smithihT. tanakaiiT. tsushimae.
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