31,195 research outputs found

    Hui tu zhen ben jing shi mu yu jin gang zuan

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    著作者余好辯, 伍憤時.Cover title.上下卷.On double leaves, East Asian binding.木魚歌文.zhu zuo zhe Yu Haobian, Wu Fenshi.Shang xia juan.Mu yu ge wen

    ‘Yu Rongling (裕容齡1889–1973) – Diplomat’s daughter who introduced Western dance to China’

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    Yu Rongling's sword dance. Footage of Yu Rongling performing a dance with swords. The performance was filmed at the Temple of. Heaven in Beijing, in June 1926

    Yu Takeuchi

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    Yu Takeuchi is serving for JAXA since 2007 and currently working as Associate Senior Administrator at Management and Integration Department of Human Spaceflight Technology Directorate. He is also working as Researcher at the Institute of Space Law of Keio University. He received LL.M. degree from the Institute of Air and Space Law of McGill University in 2015. His main interest is in international space law inter alia the legal aspects of space traffic management and sustainable space development. He is a member of the Air Law Institute of Japan, Japanese Society of International Law, and the International Institute of Space Law (IISL). Main Works Published in English - “Toward the International Regime for Space Traffic Management -What to Fix the Current International Regulations-”, (November 5, 2014). Space Traffic Management Conference, Paper 23 (http://commons.erau.edu/stm/2014/wednesday/23). - “Regulatory Regime for Tomorrow’s Suborbital Space Flights: Point-to-point International Flights”, 56th Colloquium on the Law of Outer Space, 2013. - “Space Traffic Management as a Guiding Principle of the International Regime of Sustainable Space Activities,” 4 Journal of East Asia and International Law, 2011 - “Japanese Perspective on Legal Issues of Commercial Human Spaceflight” (co-author), 53rd Colloquium on the Law of Outer Space, 2011 - “Legal Points at Issue about NEO Threat Response and International Cooperation” (co-author), 28th International Symposium on Space Technology and Science, 2011 - “From Guideline to International Treaty for Rule of Law concerning Mitigation of Space Debris?” (co-author), 52nd Colloquium on the Law of Outer Space, 2010 Main Works Published in Japanese (title translated into English) - “What is Space Traffic Management”, Vol. 46, No.9, Journal of the Japanese Institute of International Business Law, 2018. - Soichiro Kozuka & Masahiko Sato eds., Introduction of Space Law for Entrepreneur (2nd. Ed.), Yuhikaku, 2018. (co-authored) -“Challenges to International Space Law for Managing Space Traffic”, 55 Kuho (Air Law), 2014. -“Legal Points as Issues of NEO Threat Response and International Cooperation” (co-author), 3 Spaceguard Research, Japan Spaceguard Association, 2011https://commons.erau.edu/stm-images/1121/thumbnail.jp

    Guo yu yue kan.

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    Description based on: di 1 juan di 5 qi (Minguo 11 nian 6 yue [June 1922]); title from cover.Mode of access: Internet

    Chao cai liao yong yu ya bo chang ju jiao: ge xiang yi xing hao sun cai liao yu ti du guang xue na mi bo dao guan

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    Kwok, Hui Kin = 超材料用於亞波長聚焦 : 各向異性耗損材料與梯度光學納米波導管 / 郭栩健.Thesis M.Phil. Chinese University of Hong Kong 2015.Includes bibliographical references (leaves 67-69).Abstracts also in Chinese.Title from PDF title page (viewed on 26, September, 2016).Kwok, Hui Kin = Chao cai liao yong yu ya bo chang ju jiao : ge xiang yi xing hao sun cai liao yu ti du guang xue na mi bo dao guan / Guo Xujian

    Yi ge zai Jianada wei qi si xing qi de Ying yu ke cheng de yu wen ji wen hua xue xi

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    Chan, Sin Yu.Thesis M.Phil. Chinese University of Hong Kong 2015.Includes bibliographical references (leaves 260-268).Abstracts also in Chinese; some appendixes in Chinese.Title from PDF title page (viewed on 11, November, 2016).Chan, Sin Yu

    Intractability of Optimal Multi-Robot Path Planning on Planar Graphs

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    We study the computational complexity of optimally solving multi-robot path planning problems on planar graphs. For four common time- and distance-based objectives, we show that the associated path optimization problems for multiple robots are all NP-complete, even when the underlying graph is planar. Establishing the computational intractability of optimal multi-robot path planning problems on planar graphs has important practical implications. In particular, our result suggests the preferred approach toward solving such problems, when the number of robots is large, is to augment the planar environment to reduce the sharing of paths among robots traveling in opposite directions on those paths. Indeed, such efficiency boosting structures, such as highways and elevated intersections, are ubiquitous in robotics and transportation applications.Peer reviewe

    Berberis pengii C. C. Yu & K. F. Chung. A. Fruiting 2014, sp. nov.

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    8. Berberis pengii C.C.Yu & K.F.Chung, sp. nov. (Figs. 7E–H, 13). Type:— TAIWAN. Pingtung: Taiwu, Kuaiku Lodge, 22°36’48”N, 120°44’39”E, 2150 m, 18 April 2011, Chih-Chieh Yu 683 (holotype TAI -284283!). Diagnosis: Berberis pengii is similar to B. aristatoserrulata, B. chingshuiensis, and B. mingetsensis in its leaf shape, differing from the latters by its narrow-triangular or triangular-oblong outer sepals and from the former by its globose berries. Evergreen shrub or small tree-like shrub, 1.5–4 m tall. Mature stems yellowish-brown, not verruculose. Spines 3-fid, concolorous, 0.8–1.8 cm. Leaves subsessile or sometimes with short petioles ca. 2–5 mm; leaf blade elliptic or narrowlyelliptic, abaxially pale green sometimes pruinose, adaxially shiny green; 4.4–8.9 × 1.4–2.6 cm, leathery; midvein abaxially raised and adaxially impressed, lateral veins slightly raised, the secondary veins pinnate, jointly looped and multi-festooned, the tertiary veins weakly reticulated; base cuniform, margins densely spinose with spinules of 13–27 with 1.5–3.5 mm apart on each side, apex acute or attenuate. Inflorescence a fascicle, 4–7-flowered. Bracts absent. Pedicel pale green, 0.4–1.6 cm. Bracteoles absent. Flowers yellow. Sepals in 3 whorls, outer sepals with midveins slightly raised yellow or reddish tinge narrowly-triangular or triangularly-oblong 5 × 1 mm, middle sepals yellow or reddish tinge ovate 7.5 × 2.5 mm, inner sepal yellow obovate 8 × 4 mm. Petals elliptic, 7 × 4 mm, base clawed with a pair of narrowly-ovoid nectaries very close to each other, apex acutely emarginated with margins slightly ragged. Stamens bright yellow ca. 5 mm, anther connective of stamen distinct, apex truncate. Pistil 5.5 mm long, usually red. Ovules 6 or 8. Berries black, globose or sub-globose ca. 10 × 10 mm, more or less pruinose, estylose. Phenology: — Flowering April–May; Fruiting April–June, October, November. Distribution & habitat: — Berberis pengii is large understory shrubs of 1–2 m tall commonly found in the coniferous and broad-leaved mixed forests in the southern Central Mountain Range at 2100 to 2500 m (Fig. 6B). Etymology:—The specific epithet is named in honor of Dr. Ching-I Peng, mentor and collaborator of the senior author, for his continuous guidance, supports, and friendship, and for his great contribution to the studies of Asian Flora. Chinese name: NJfi灣小ª Proposed IUCN conservation status: —Nearly Threatened. Berberis pengii is endemic to south Taiwan and its natural range is mostly within the range of national preservation areas. Therefore we propose a provisional IUCN category of NT for the species (IUCN 2012). Additional specimen examined: — TAIWAN. Kaohsiung: Dagueii Lake, 2150 m, 11 February 2009, Yu 338 (TAI), near the Blue Ghost Lake, 2400 m, 10 February 2009, Yu 339 (TAI), Juniper Camping Site, 2250 m, 12 February 2009, Yu 378 (TAI), the “Big Field” near Dagueii Lake, 2250 m, 10 February 2009, Yu 379 (TAI); near Camp Yukuting, 2400 m, 12 February 2009, Yu 355, 358 (TAI); Dona Logging Trail, 2100 m, 12 February 2009, Yu 347 (TAI). Pingtung: Peitawushan, 3000 m, 6 June 1988, Huang 13670 (TAI), 2400–2600 m, 30 November 1997, Liu 146 (TNM), 2500– 2900 m, 24 April 2008, Wu 165 (TNM); en route from the first Lodge to Chih-pen-chu-shan, 1900 m, 10 March 1990, Lin 408 (HAST); Pa-yu lake to Lakalakashan, 14 February 1993, Yang 30239 (HAST, PE); Kuaiku Lodge, 2250–2900 m, 2 April 1994, Chen 595 (HAST, TNM), 1600–2150 m, 9 October 2006, Wang 9342 (TNM), 2150 m, 18 April 2011, Yu 683 (TAI); Tamaru Camping Site, near Damumushan, 2200 m, 21 May 2009, Yu 325 (TAI); behind Nantawushan, 2500 m, 2 May 2009, Yu 330 (TAI); Linpalapalashan, 2300 m, 22 May 2009, Yu 377 (TAI). Taitong: near Shishuitoushan, 2300 m, 11 February 2009, Yu 341 (TAI).Published as part of Yu, Chih-Chieh & Chung, Kuo-Fang, 2014, Systematics of Berberis sect. Wallichianae (Berberidaceae) of Taiwan and Luzon with description of three new species, B. schaaliae, B. ravenii, and B. pengii, pp. 61-99 in Phytotaxa 184 (2) on pages 85-88, DOI: 10.11646/phytotaxa.184.2.1, http://zenodo.org/record/514650

    Er tong shui mian jie lü: zheng chang can kao zhi, xiang guan yin su, dui jian kang de ying xiang, he gan yu gai shan

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    Yu, Xinting.Thesis Ph.D. Chinese University of Hong Kong 2014.Includes bibliographical references (leaves 188-207).Abstracts also in Chinese; appendixes in Chinese.Title from PDF title page (viewed on 14, September, 2016).Yu, Xinting

    Revisiting a Mei-Yu Front Associated with Heavy Rainfall over Taiwan during 6–7 June 2003

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    During 6–7 June 2003, a Mei-Yu jet/front system over Southern China is characterized by appreciable horizontal temperature contrast below the 850 hPa level (>8 K), where the cold, dry, postfrontal northeasterlies converge with the warm, moist southwesterly flow, and above the 400–hPa level (>18 K) associated with an upper-level front. The frontal baroclinic zone tilts northward with a slope of ~1/100. During the passage of a midlatitude trough, the upper-level jet/front system advances southeastward. The thermally direct circulation across the subsynoptic low-level jet (SLLJ)/Mei-Yu front system, coupled with dynamic forcing aloft on the equatorial side of the entrance region of a subsynoptic upper-level jet (SULJ), provides a favorable environment for the development of a frontal cyclone over Southern China. A southwesterly marine boundary layer jet (MBLJ) develops between the deepening Mei-Yu frontal cyclone and the West Pacific Subtropical High (WPSH). The MBLJ transports moisture from the northern South China Sea (NSCS) to Southern China. All three jets (SULJ, SLLJ, and MBLJ) interact together during the deepening of the Mei-Yu frontal cyclone with positive feedback effects of latent heat release. On 7 June 2003, as the Mei-Yu front arrives near the Taiwan area, the warm, moist, and unstable air associated with the MBLJ decelerates as it approaches the Central Mountain Range (CMR). The warm, moist, and unstable air is orographically lifted by the CMR and enhances the vertical motion already present with the frontal zone. A region of widespread heavy rainfall develops, with a maximum of more than 350 mm/day, over a region extending from the southwestern coast of Taiwan to the windward slopes of the CMR
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