Sample records for nandanmai daxue hanyu

  1. Modernizing China’s Military: Opportunities and Constraints

    DTIC Science & Technology

    2005-01-01

    National Defense Economic Development Strategy], Beijing : Guofang daxue chubanshe, 1990; Sun Zhenyuan, Zhongguo guofang jingji jianshi [China’s...scenarios are outlined in Wang Hongqing and Zhang Xingye, eds., Zhanyixue [The Science of Military Campaigns], Beijing , China: Guofang Daxue Chubanshe...National Defense Eco- nomic Development Strategy], Beijing : Guofang daxue chubanshe, 1990. Naughton, Barry, Growing Out of the Plan, Cambridge, United

  2. Getting Beyond Taiwan? Chinese Foreign Policy and PLA Modernization

    DTIC Science & Technology

    2011-01-01

    Interests] ( Beijing : Guofang Daxue Chubanshe, 2007); and Yang Mingshu, chief ed., Haishang Tongdao Anquan yu Guoji Hezuo [SLOC Security and International... Beijing : Guofang Daxue Chubanshe, 2009); Shou Xiaosong and Xu Jingnian, chief eds., Jundui Yingdui Fei- chuantong Anquan Weixie Yanjiu [Research on the...Xingdong [Non- War Military Operations] ( Beijing : Guofang Daxue Chubanshe, 2006); and Xiao Tianliang, Junshi Liliang de Feizhanzheng Yunyong [Non-War

  3. China Report, Science and Technology.

    DTIC Science & Technology

    1987-05-08

    RECTANGULAR TANK UNDER LOW-GRAVITY CONDITIONS Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in...1077 48 APPLIED SCIENCES of NEW WEIGHTED TECHNIQUE IN HEURISTIC SEARCH Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA...WITH ECCENTRIC CRACK Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in Chinese Vol 26 No 3, Jun

  4. China Report, Science and Technology.

    DTIC Science & Technology

    1987-05-06

    86) 96 Slip-Line Field Problems Solved by Method of Approach (Hu Zhong , et al.; QINGHUA DAXUE XUEBAO, No 5, Oct 86) 97 Technical Development...SWITCHING-MODE REGULATOR Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in Chinese Vol 26 No 5, Oct... Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in Chinese Vol 26 No 5, Oct 86 pp 10-21 [English

  5. JPRS Report, Science & Technology, China.

    DTIC Science & Technology

    1987-07-07

    Detector Response , Projection Sampling on the Contrast of CT Reconstructed Images (Qu Jianxiong; ZHONGGUO KEXUE JISHU DAXUE XUEBAO, No 3, Sep 86) 5...Plan’ Update 92 Hunan Soft Sciences Research Association 92 Burgeoning Technology Market .92 Radioactive Waste Depots Set...DETECTOR RESPONSE , PROJECTION SAMPLING ON THE CONTRAST OF CT RECONSTRUCTED IMAGES Hefei ZHONGGUO KEXUE JISHU DAXUE XUEBAO [JOURNAL OF CHINA

  6. JPRS Report, Science & Technology, China

    DTIC Science & Technology

    1991-03-05

    DAXUE Induction-Density Measurement at State-of-the XUEBAO [JOURNAL OF HUAZHONG (CENTRAL Art CHINA) UNIVERSITY OF SCIENCE AND 91P60113B Beijing KEJI...SENSORS, OPTICS Two New Optical Devices Accredited [HUAZHONG LIGONG DAXUE XUEBAO, Dec 90] ................. 22 1.3-Micron Single-Mode Laser Light...DIANXIN JISHU, Jan 91] ........................... 31 PHYSICS Shape Measurement of Synchrotron Radiation With High Time Resolution [Cao Zhong , Liu

  7. Hanyu Zhang | NREL

    Science.gov Websites

    investigate approaches that can make 2D materials with better functionality by studying the energetic ., Engineering Chemically-Exfoliated Large-Area Two-Dimensional MoS2 Nanolayers with Porphyrins for Improved

  8. Keeping up Appearances before the "Other"? Interculturality and Occidentalism in the Educational TV-Program "Happy Chinese"

    ERIC Educational Resources Information Center

    Dervin, Fred; Gao, Minghui

    2012-01-01

    "Happy Chinese" or kuaile hanyu is an educational melodrama produced by the Chinese TV channel CCTV in 2009. Aiming to improve foreign learners' Chinese language skills, the plot revolves around Susan, an American, staying with her former Chinese classmate's family. "Happy Chinese" proposes both language and cultural learning.…

  9. Let's Tweet in Chinese! Exploring How Learners of Chinese as a Foreign Language Self-Direct Their Use of Microblogging to Learn Chinese

    ERIC Educational Resources Information Center

    Hsiao, Ya Ping; Broeder, Peter

    2014-01-01

    Twitter is becoming increasingly popular as a medium for language learning. This study explores self-directed learning via social interactions that use Twitter as an interactive learning environment. The participants in this study were thirty university students of Chinese as a foreign language at levels 1 and 2 of the "Hanyu Shuiping…

  10. A Poverty of Riches. New Challenges and Opportunities in PLA Research

    DTIC Science & Technology

    2003-01-01

    Press ( Beijing Daxue Chubanshe ). This guide provides listings and rankings of “core” Chinese journals in numerous categories, including military...178 - vii - Martial Law in Beijing , 1989...............................................................................182 Phony...Administrative Control AMS Academy of Military Science BADCC Beijing Aerospace Directing and Controlling Center BBS Bulletin Board Systems BNS Beidou

  11. JPRS Report, Science & Technology, China

    DTIC Science & Technology

    1991-08-05

    trima [more] Granulosis Virus [DTGV] and Its Characterization of Nuclear Acid and Protein [Yang Zhirong, Liu Shigui, et al.; SICHUAN DAXUE XUEBAO, No...KxC 6 o Superconductor Synthesized by Beijing University, CAS Institute of Physics [RENMIN RIBA, 17 Jul 91...Reviewed surement and metering systems, industrial production of 91FE0608 Beijing WULI [PHYSICS] in Chinese liquid hydrogen and long-term storage, long

  12. China Report, Science and Technology, No. 186

    DTIC Science & Technology

    1983-02-03

    AUTOMOBILE TECHNOLOGY QICHE JISHU [AUTOMOBILE TECHNOLOGY] No 10, 25 Oct 82 .................. 20 GEOLOGY TONGJI DAXUE XUEBAO [JOURNAL OF TONGJI UNIVERSITY...33 - b - APPLIED SCIENCES HEBEI’S LIU BINGYAN ON IMPORTING TECHNOLOGY HK040452 Beijing ZHONGGUO XINWEN SHE in Chinese 1127 GMT 3 Dec 82...Text] Beijing , 3 Dec (ZHONGGUO XINWEN SHE)--People’s deputy and Hebei pro- vincial acting Governor Liu Bingyan said at an NPC discussion meeting on 2

  13. A revision of Eastern Palaearctic Anthobium Leach, 1819 (Coleoptera: Staphylinidae: Omaliinae: Anthophagini). I. Gracilipalpe, morchella and nigrum groups.

    PubMed

    Shavrin, Alexey V; Smetana, Aleš

    2017-12-15

    Three new species-groups are established for eastern Palaearctic species of the genus Anthobium Leach, 1819: Gracilipalpe-group containing A. gracilipalpe (Champion, 1920) (Uttaranchal, Nepal), A. daliense sp.n. (China: Yunnan, Diancang Shan) and A. nivale sp.n. (China: Yunnan, Gaoligong Shan). Morchella-group containing A. morchella sp.n. (China: Yunnan, Baima Shan), A. hydraenoides sp.n. (China: Yunnan, Meili Xue Shan) and A. puetzi sp.n. (China: Sichuan, Daxue Shan, Qionglai Shan). Nigrum-Group containing A. nigrum (Cameron, 1924) (Himalaya), A. anishchenkoi sp.n. (China: Gansu, Dalijia Shan), A. conjunctum sp.n. (China: Yunnan, Diancang Shan), A. densepunctatum sp.n. (China: Yunnan, Meili Xue Shan) and A. ivani sp.n. (Nepal: Bagmati; Bhutan). The species groups are defined, briefly discussed and a key to the species included in each group is given. Lectotypes are designated for Eudeliphrum gracilipalpe Champion, 1920 and Lathrimaeum nigrum Cameron, 1924. Species in each species-group are described/redescribed, illustrated and their geographical distribution is mapped. Members of the genus Anthobium are recorded for the first time from China and Bhutan, and Anthobium gracilipalpe is recorded for the first time from Nepal.

  14. Presentation Factors in the Learning of Chinese Characters: The Order and Position of Hanyu Pinyin and English Translations

    ERIC Educational Resources Information Center

    Chung, Kevin K. H.

    2007-01-01

    The influence of different instructional presentations upon meaning and pronunciation acquisition in character learning was examined. High school students learned to identify a series of characters in terms of their associated pinyin and English translation prompts. Acquisition was shown to proceed more rapidly when the Chinese character was…

  15. Pressure-induced transition in the grain boundary of diamond

    NASA Astrophysics Data System (ADS)

    Chen, J.; Tang, L.; Ma, C.; Fan, D.; Yang, B.; Chu, Q.; Yang, W.

    2017-12-01

    Equation of state of diamond powder with different average grain sizes was investigated using in situ synchrotron x-ray diffraction and a diamond anvil cell (DAC). Comparison of compression curves was made for two samples with average grain size of 50nm and 100nm. The two specimens were pre-pressed into pellets and loaded in the sample pressure chamber of the DAC separately to minimized differences of possible systematic errors for the two samples. Neon gas was used as pressure medium and ruby spheres as pressure calibrant. Experiments were conducted at room temperature and high pressures up to 50 GPa. Fitting the compression data in the full pressure range into the third order Birch-Murnaghan equation of state yields bulk modulus (K) and its pressure derivative (K') of 392 GPa and 5.3 for 50nm sample and 398GPa and 4.5 for 100nm sample respectively. Using a simplified core-shell grain model, this result indicates that the grain boundary has an effective bulk modulus of 54 GPa. This value is similar to that observed for carbon nanotube[1] validating the recent theoretical diamond surface modeling[2]. Differential analysis of the compression cures demonstrates clear relative compressibility change at the pressure about 20 GPa. When fit the compression data below and above this pressure separately, the effect of grain size on bulk modulus reverses in the pressure range above 20 GPa. This observation indicates a possible transition of grain boundary structure, likely from sp2 hybridization at the surface[2] towards sp3like orbital structure which behaves alike the inner crystal. [1] Jie Tang, Lu-Chang Qin, Taizo Sasaki, Masako Yudasaka, Akiyuki Matsushita, and Sumio Iijima, Compressibility and Polygonization of Single-Walled Carbon Nanotubes under Hydrostatic Pressure, Physical Review Letters, 85(9), 1187-1198, 2000. [2] Shaohua Lu, Yanchao Wang, Hanyu Liu, Mao-sheng Miao, and Yanming Ma, Self-assembled ultrathin nanotubes on diamond (100) surface, Nature

  16. EDITORIAL: Close contact Close contact

    NASA Astrophysics Data System (ADS)

    Demming, Anna

    2010-07-01

    means to produce nanoscale device elements, such as carbon nanotube transistors [5] and high-density memory crossbar circuits [6]. Recently, the use of scanning tunnelling microscopes has broached a new field of research, which is currently attracting enormous interest—single molecule detection. In issue 25 of Nanotechnology researchers in Houston reported unprecedented sensitivities using localized surface plasmon resonance shifts of gold bipyramids to detect concentrations of substances down to the single molecule level [7]. In issue 26 a collaboration of researchers from the US and Czech Republic describe a different approach, namely tunnelling recognition. In their topical review they describe hydrogen-bond mediated tunnelling and the associated experimental methods that facilitate the detection of single molecules in a tunnel junction using chemically functionalized electrodes [8]. The nanoworld depicted by scanning probe microgaphs over 20 years ago may have looked as extraterrestrial as any science fiction generated alien terrain, but though study and analysis these nano-landscapes have become significantly less alien territory. The work so far to unveil the intricacies of electronic contact has been a story of progress in investigating this new territory and manipulating the mechanisms that govern it to formulate new devices and delve deeper into phenomena at the nanoscale. References [1] Binning G, Rohrer H, Gerber Ch and Weibel E 1982 Phys. Rev. Lett. 49 57-61 [2] X D Cui, X Zarate, J Tomfohr, O F Sankey, A Primak, A L Moore, T A Moore, D Gust, G~Harris and S M Lindsay 2002 Nanotechnology 13 5-14 [3] Martin C A, van Ruitenbeek J M and van der Zant S J H 2010 Nanotechnology 21 265201 [4] Davis J J and Hanyu Y 2010 Nanotechnology 21 265302 [5] Tans S J, Verschueren A R M and Dekker C 1998 Nature 393 49-52 [6] Chen Y, Jung G-Y, Ohlberg D A A, Li X, Stewart D R, Jeppesen J O, Nielsen K A, Stoddart J F and Williams R S 2003 Nanotechnology 14 462-8 [7] Mayer K M