47,418 research outputs found

    Nyctiophylax (Paranyctiophylax) taiwanensis Hsu & Chen 1996

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    Nyctiophylax (Paranyctiophylax) taiwanensis Hsu & Chen 1996 Nyctiophylax (Paranyctiophylax) taiwanensis Hsu & Chen 1996: 117–118, figs. 1–4 (male). Type locality: Tai-wan (Taichung). Remarks. We have not seen specimens of this species. Distribution. Tai-wan.Published as part of Zhong, Hua, Yang, Lian-Fang & Morse, John C., 2014, The genus Nyctiophylax Brauer in China (Trichoptera, Polycentropodidae), pp. 273-284 in Zootaxa 3846 (2) on page 282, DOI: 10.11646/zootaxa.3846.2.7, http://zenodo.org/record/492861

    A possible mechanism of superconductivity in high-T-c cuprates

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    This paper derives a generic T-c formula by using the long-range phase coherence condition in quantum phase fluctuation of the order parameter. Taking the two-local-spin-mediated interaction (TLSMI) proposed by Liu and Chen [Phys. Rev. B 58 (1998) 8812] as a Cooper pair potential, and the T-c formula, this paper explains five basic experimental facts in high-T-c cuprates. The aim of this paper is to show that TLSMI is a possible pairing mechanism of superconductivity in high-T-c cuprates. (C) 2000 Elsevier Science B.V. All rights reserved.Physics, AppliedSCI(E)EI0ARTICLE4276-28434

    Dataset for Tubular anti-resonant hollow core fiber for visible Raman spectroscopy

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    This dataset supports the publication: AUTHORS:Ian A. Davidson, Matthew Partridge, John R. Hayes, Yong Chen, Thomas D. Bradley, Hesham Sakr, Shuichiro Rikimi, Gregory T. Jasion, Eric Numkam Fokoua, Marco Petrovich, Francesco Poletti, David J. Richardson and Natalie V. Wheeler TITLE: Tubular Anti-resonant Hollow Core Fiber for Visible Raman Spectroscopy JOURNAL: Sixth International Workshop on Specialty Optical Fibers and Their Applications (WSOF 2019) Conference Digest PAPER DOI: 10.1117/12.2557110</span

    Corrigendum to “General reduced vehicle model for simulating truck-bridge pier collisions” [Dev. Built. Environ. 16 (2023) 100233] (Developments in the Built Environment (2023) 16, (S2666165923001151), (10.1016/j.dibe.2023.100233))

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    The authors regret there were two errors in the authors' affiliation in the published article. First, the affiliation of the first author (Daogang Ou) should only be the School of Civil Engineering, Hunan University of Science and Technology, Xiangtan, 411201, China. Second, the corresponding author (Lin Chen) should have two affiliations; the first one should be: School of Civil Engineering, Hunan University of Science and Technology, Xiangtan, 411201, China; and the second one should be: Key Laboratory of Building Safety and Energy Efficiency of Ministry of Education, Hunan University, Changsha, 410082, China. The authors would like to apologise for any inconvenience caused

    Photo‐Induced Ruthenium‐Catalyzed Double Remote C(sp(2))−H / C(sp(3))−H Functionalizations by Radical Relay

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    Distal C(sp(2))−H and C(sp(3))−H functionalizations have recently emerged as step‐economical tools for molecular synthesis. However, while the C(sp(2))−C(sp(3)) construction is of fundamental importance, its formation through double remote C(sp(2))−H/C(sp(3))−H activation has proven elusive. By merging the ruthenium‐catalyzed meta‐C(sp(2))−H functionalization with an aliphatic hydrogen atom transfer (HAT) process, we, herein, describe the catalyzed twofold remote C(sp(2))−H/C(sp(3))−H functionalizations via photo‐induced ruthenium‐mediated radical relay. Thus, meta‐C(sp(2))−H arene bonds and remote C(sp(3))−H alkane bonds were activated by a single catalyst in a single operation. This process was accomplished at room temperature by visible light—notably without exogenous photocatalysts. Experimental and computational theory studies uncovered a manifold comprising ortho‐C−H activation, single‐electron‐transfer (SET), 1,n‐HAT (n=5–7) and σ‐activation by means of a single ruthenium(II) catalyst

    A new Endoclita (C. &. R. Felder, 1874) from the High Mountains of Taiwan with notes about its evolutionary origins (Lepidoptera: Hepialidae)

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    Buchsbaum, Ulf, Hsu, Li-Peng, Chen, Ding-Jia, Grehan, John R. (2018): A new Endoclita (C. &amp;. R. Felder, 1874) from the High Mountains of Taiwan with notes about its evolutionary origins (Lepidoptera: Hepialidae). Zootaxa 4521 (3): 441-450, DOI: 10.11646/zootaxa.4521.3.

    Author Co-Citation Analysis (ACA): a powerful tool for representing implicit knowledge of scholar knowledge workers

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    In the last decade, knowledge has emerged as one of the most important and valuable organizational assets. Gradually this importance caused to emergence of new discipline entitled ―knowledge management‖. However one of the major challenges of knowledge management is conversion implicit or tacit knowledge to explicit knowledge. Thus Making knowledge visible so that it can be better accessed, discussed, valued or generally managed is a long-standing objective in knowledge management. Accordingly in this paper author co- citation analysis (ACA) will be proposed as an efficient technique of knowledge visualization in academia (Scholar knowledge workers)

    FIGURE 4 in Comments on the snake-eel genus Xyrias (Anguilliformes: Ophichthidae) with the description of a new species

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    FIGURE 4. Diagrammatic illustration of the dentition of the holotypes of species of Xyrias: a. holotype of X. chioui, TOU-AE 1561; b. X. guineensis, MNHN 1974-186 (after Blache, 1975: fig. 8); c. X. multiserialis, BMNH 1939.5.24.649 (after Norman, 1939: fig. 15); d. X. revulsus, CAS-SU 6476 (from McCosker 1998: fig. 2).Published as part of E, John, Chen, Wei-Li & Chen, Hong-Ming, 2009, Comments on the snake-eel genus Xyrias (Anguilliformes: Ophichthidae) with the description of a new species, pp. 61-67 in Zootaxa 2289 on page 65, DOI: 10.5281/zenodo.19132

    FIGURE 5 in Comments on the snake-eel genus Xyrias (Anguilliformes: Ophichthidae) with the description of a new species

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    FIGURE 5. Holotypes of species of Xyrias (from McCosker 1998): a. X. revulsus, CAS-SU 6476 (after Jordan and Snyder, 1901: fig. 16); b. X. guineensis, MNHN 1974-186 (after Blache, 1975: fig. 7); c. X. multiserialis, BMNH 1939.5.24.649 (after Norman, 1939: fig. 15).Published as part of E, John, Chen, Wei-Li & Chen, Hong-Ming, 2009, Comments on the snake-eel genus Xyrias (Anguilliformes: Ophichthidae) with the description of a new species, pp. 61-67 in Zootaxa 2289 on page 66, DOI: 10.5281/zenodo.19132
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