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Online since: September 2016
Authors: Parthasarathy Kartheeswaran, Paulraj Jawahar
Experimental Procedure Materials.
Acknowledgement The author expresses sincere thanks to the Department of Science and technology, India, for their financial support to carry out this research work through research project “File No.SB / FTP/ETA-0201 / 2013” References [1] Hernández M, M.D.M.
Manchado, “Overall performance of natural rubber/graphene nanocomposites” Composites Science and Technology, 73 (2012) pp. 40-46
K, Jurk R, Boldt R, Fischer D, Stöckelhuber K.W, Heinrich G, “Rubber composites based on graphene nanoplatelets, expanded graphite, carbon nanotubes and their combination: A comparative study”, Composites Science and Technology, 72 (2012) pp. 1961-1967
[4] Wang J.D., Zhu Y.F, Zhou X.W, Sui G, Liang J, “Preparation and mechanical properties of natural rubber powder modified by carbon nanotubes”, Journal of Applied polymer Science, 100 (2006) pp. 4697-4702
Online since: October 2013
Authors: Pin Wang, Hai Ping Huang
On the W&R and RSI Expert Systems of Securities Software WANG Pin1,a and HUANG Hai-ping2,b 1,2Mathematics and Computer Science Department, Guangxi College of Education, Nanning, Guangxi, China Corresponding author: HUANG Hai-ping2,b b1040168586@qq.com Keywords: Expert system; W&R; RSI.
Acknowledgements This work is supported by the Education Science fund of the Education Department of Guangxi, China (project approval number: 2012JGA267), and Guangxi Office for Education Sciences Planning, China (project approval number:2013c108) ,and Guangxi Provincial Natural Science Research Project for Universities (project approval number: 2013YB378) , and Characteristic Professional Project fund of the Education Department of Guangxi, China (project approval number: GXTSZY277).
WANG:“Consideration-oriented RSI Investment Decision”, Journal of Quantitative Economics(in Chinese), Vol. 29 No. 1, pp. 25-29, 2012
HUANG: “Discussions on Securities Software Expert System MA and RSI” Advanced Materials Research Vols. 798-799 (2013) pp 757-760
Online since: September 2014
Authors: Yan Peng Zhu, Zhi Tong Mao
References [1] Xie Heping.resource extraction under deep high stress and underground engineering-opportunities and challenges[C]. the 175th symposium communication materials of Xiangshan Science Conference , 2001,BeiJing, Science Press:1-9
Stability control theory and supporting technology Application in surrounding rock channel of deep coal[M].Science Press
Improvement and application of Hoek-Brown formula[J].rock mechanics and Engineering Journal, 2005, 24(22):4030-4035
[6] Ma Yu.two research on stress field and the stability of underground engineering at Jinchuan second mining area .Chinese Academy of Geological Sciences[PhD dissertation].
Online since: May 2014
Authors: Masahiro Fukushima, Hideyuki Kanematsu, Yoshiaki Shimamoto, Toshiro Kobayashi, Yuichi Utsumi
Design and Prototyping of a Fuel Cell Controlling Equipment for Small Hybrid Driving Airship System TOSHIRO Kobayashi1, a, MASAHIRO Fukushima1, b, HIDEYUKI Kanematsu2, c, YUICHI Utsumi3, d and YOSHIAKI Shimamoto4, e 1Department of Electronics & Control Engineering Tsuyama National College of Technology, Okayama, 708-8509 Japan 2Department of Materials Science & Engineering Suzuka National College of Technology, Mie, 510-0294 Japan 3Laboratory of Advanced Science and Technology for Industry University of Hyogo, Hyogo 678-1205 Japan 4Fukushima Industries Co.
Nakadate, “On the structure of the low altitude stationary flight test vehicle”, Journal of Aircraft, Vol.44, No.2 (2007), pp.882-666
[3] http://www.spc.jst.go.jp/hottopics/1110space , _science/r1110_ton.html [4] http://yama-sone.at.webry.info/200908/article_9.html [5] T.
Kanematsu, “Design and Trial manufacturing of an Airship equipped with Fuel Cell Hybrid driving system“, 2012.11 2nd Japan-Thailand Friendship International Workshop on Science, Technology & Education (JTSTE 2012), Nov. 15-16th, (2012) Pattaya, Thailand [6] D.
Online since: September 2013
Authors: Jing Li, Peng Fei Li, Gang Du, Xiao Ping Wu
Measurement of Trap Stiffness of Holographic Optical Tweezers with Fluid Mechanics Method Jing Li1, a, Pengfei Li1, Gang Du1, Xiaoping Wu2 1Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei 230027, China 2Department of Modern Mechanics, University of Science and Technology of China, Hefei 230027, China a email: lijing@ustc.edu.cn Keywords: Fluid mechanics method, CMOS camera, Trap stiffness measurement, Holographic optical tweezers Abstract.
It has been applied widely in the fields of biology, physics, chemistry, nano-materials, nano-fabrication and so on [1-7].
Acknowledgement We are grateful to the National Natural Science Foundation of China (Grant No. 91023049), 973 Programs (Grant No. 2012CB937500) and Program for the scientific instrument development of the Chinese Academy of Sciences (Grant No.Y2201265) for financial support of this work.
Ducker: JOURNAL OF APPLIED PHYSICS Vol.113 (2013), p.013503
Online since: August 2014
Authors: Shi Feng Guan, Zhen Yao Xia, Lin Lin Zhang, Yi Chen
Materials and methods The general situation of study area Test sample is located in Shuitianba village, Zigui county, Yichang city, Hubei province, which latitude and longitude coordinates is 13'37°31"N, 110°41'16"E and the elevation is 272 meters.
Table 2 The index of compressibility of purple soil  Index of compressibility Moisture content 12% 14% 16% 17.76% 20% Compression coefficient (av1~2/MPa-1) 2.00 2.70 2.20 1.90 1.80 Compression index (Cc) 2.89 2.76 2.40 2.36 2.05 Compression modulus (Es/MPa) 1.06 0.74 0.84 0.93 0.89 Acknowledgements This work was financially supported by the National Natural Science Foundation of China (41202250), Postgraduate Scientific Research Innovation Fund of China Gorges University (2013CX002).
Journal of Agro-Environment Science, 2008, 27(4):1371- 1376
Beijing, Science Press, 2003.
Science of Soil and Water Conservation, 2006, 4(2): 62-65.
Online since: May 2012
Authors: Yan Jun Feng, Xiu Wei Shi, Xian Liu
GIS and Multi-source information Geographic Information System (GIS) is a technology system used for the management and research on spatial data, which can deal with the spatial data of earth science by means of geographic coordinates or position in the space.
Fengfeng group is the main threat to the mining with pressure according to the test material of the Ts-20 hydrological hole.
The quantization of water inrush factors The mechanism of water inrush is that the existence of the confined aquifer is the material basis of water inrush, water pressure and mining pressure are the power source and impermeable layer is the suppression conditions whose ability to inhibit depends on thickness, strength as well as their combination relations.
Fig.1 Zoning forecast map of water-inrush from floor in DongShan Mine References [1] Hailing Kong, Xiexing Miao and Luzhen Wang: China University Mining & Technology Vol.17 (2007), P. 0453 [2] Entai Guan, Qiang Wu and Huanjun Ji: Geotechnical Investigation & Surveying (2001), P.18 (In Chinese) [3] Dong Jiang, Jianhua Wang and Peipei Chen: Journal of Geological Hazards and Environment Preservation Vol. 10(1999), P.67 (In Chinese) [4] Junhua Tang, Haibo Bai, Banghua Yao and Yu Wu: Mining Science and Technology Vol.21 (2011), P.57 [5] T.H.Yang, J.Liu and W.C.Zhu: Rock Mechanics & Mining Sciences Vol.44(2007),P.87 [6] Wang J-A and Park HD: Rock Mechanics & Mining Sciences Vol.40 (2003), P.537
Online since: December 2010
Authors: Guo Hong Huang, Guo Rong Duan, Xin Wang, Ying Gong
Preparation and Physicochemical Properties of Concrete Slump-loss Resistance Agent for Small Slump Guorong Duan1,2, a, Guohong Huang1,b, Xin Wang2,c, Ying Gong1,d 1Ruidi Engineering & Technology Center, Nanjing Hydraulic Research Institute, Nanjing, 210024, China 2Key Laboratory for Soft Chemistry and Functional Materials of Ministry Education, Nanjing University of Science and Technology, Nanjing, 210094, China aduangr2003@yahoo.com.cn, bghhuang@nhri.cn, cwangx@njust.edu.cn, dgymm1984@163.com Keywords: Comb-Shaped; Polycarboxylate; Slump-Loss; Small Slump Concrete; Conductivity Abstract.
Acknowledgements Jiangsu Province Natural Science Foundation(Grant.
No. 0901008C)and China Postdoctoral Science Foundation(Grant.
Vol. 35(2005), p1882 [3] Pu Lin, Xuehong Huang, Lidan Weng: Journal of Fujian Normal University (Natural Science Edition).
Vol. 260(2005), p173 [6] Qianping Ran, Qian Tian, Jiaping Liu: Journal of Basic Science and Engineering.
Online since: August 2013
Authors: Shuo Xing, Yun Xia Wang
When the cushion materials are different (the cushion modulus are different), its effect is different.
Science Technology and Engineering, 2012,12(16): 4030~4033
Site Investigation Science and Technology, 2010(3):28~31
Journal of Liaoning Technical University(Natural Science), 2008,27(1):63~65
Journal of Hohai University(Natural Sciences), 2006,34(3):321~324
Online since: May 2012
Authors: Fei Dong, Wen Qi Peng, Xiao Bo Liu
The designed water stage is 332.59m which occurred in August, 2006, and this data is obtained from the materials which are provided by Shizitan Hydropower General Station.
Journal of environmental sciences.
Beijing, Science Press, 2010.
Chongqing Environmental Science.
Journal of Soil and Water Conservation.