Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: October 2011
Authors: Mohamad Rusop, Mohamad Hafiz Mamat, Salina Muhamad, Syafinaz Wan Anwar Wan, Mohamed Zahidi Musa, Mohd Firdaus Malek, Diyana Md Sin, Zuraida Khusaimi
ZnO is a wide semiconductor material that has an energy bandgap of 3.3 eV and a large exciton binding energy of 60 meV.
Science Officer) and Mr.
Shi: Journal of Crystal Growth Vol. 300 (2007) p. 353 [6] S.
Qing: Science China Physics, Mechanics & Astronomy Vol. 54(1) (2011), p. 102 [7] X.C.
Que: Solar Energy Materials & Solar Cells Vol. 94 (2010), p. 2181
Science Officer) and Mr.
Shi: Journal of Crystal Growth Vol. 300 (2007) p. 353 [6] S.
Qing: Science China Physics, Mechanics & Astronomy Vol. 54(1) (2011), p. 102 [7] X.C.
Que: Solar Energy Materials & Solar Cells Vol. 94 (2010), p. 2181
Online since: November 2010
Authors: Bin Quan Jiao, Dong Wei Li, Jin Liu
The solid waste and weak acid water mixed in a certain solid-to-liquid ratio (1:10) and the leachate was obtained by filtering the undissolved materials.
Zheng: Environment Science.Vol. 22 (2001)No.3, p.126-128
Liu: Journal of Liaoning Technical University.
Xu:Environmental Science and Management.Vol. 20 (2007) No.2, p.39-44
Duan,et al: Research of Environmental Sciences.
Zheng: Environment Science.Vol. 22 (2001)No.3, p.126-128
Liu: Journal of Liaoning Technical University.
Xu:Environmental Science and Management.Vol. 20 (2007) No.2, p.39-44
Duan,et al: Research of Environmental Sciences.
Online since: January 2011
Authors: Jie Yin, Qian Mu Li, Xiang He Wei, Yong Qi
The Design and Analysis on Communication Physical layer of high-speed inter-missile networking
Qi Yong1, a, Li Qianmu1,b , Wei Xianghe1,c and Yin Jie2,d
1School of Computer Science and Technology, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China
2School of Computer Science & Technology, Jiangsu Police Institute, China
Anjqiyong2003@yahoo.com.cn, bliqianmu@126.com, chouxiaozhu@126.com, ayinjie@jspi.cn
Keywords: high-speed inter-missile networking, Physical layer, Communication solution
Abstract.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (60903027, 90718021), Jiangsu Public Security Department Scientific Project and NUST Research Funding (2010XQTR04).
Key Engineering Materials , 2010, Vols. 440 [2] Li Qianmu, Wang Rui, Yin Jie and Hou Jun.
Key Engineering Materials, 2010, Vols. 439 [3] Xu Jia, Li Qian-mu, ZHANG Hong, LIU Feng-yu.
Computers & Electrical Engineering, 2010 , Vol.36, Issue 3 [4] Li QM, Zhang H, Liu FY, A Data-link User’s Safeguard Strategy Based on Reliability Theory , Journal of Computational Information Systems,2006,2(3)
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (60903027, 90718021), Jiangsu Public Security Department Scientific Project and NUST Research Funding (2010XQTR04).
Key Engineering Materials , 2010, Vols. 440 [2] Li Qianmu, Wang Rui, Yin Jie and Hou Jun.
Key Engineering Materials, 2010, Vols. 439 [3] Xu Jia, Li Qian-mu, ZHANG Hong, LIU Feng-yu.
Computers & Electrical Engineering, 2010 , Vol.36, Issue 3 [4] Li QM, Zhang H, Liu FY, A Data-link User’s Safeguard Strategy Based on Reliability Theory , Journal of Computational Information Systems,2006,2(3)
Online since: November 2011
Authors: Da Qiang Cang, Ling Ling Zhang, Li Xue Qin, Dong Xu, Jian Feng Duan
State Key Laboratory of Advanced Metallurgy, University of Science and Technology, Beijing 100083, China;
axdong_ustb@yeah.net; bcangdaqiang@metall.ustb.edu.cn, clinglingzhangll@hotmail.com, dlixue40522024@163.com, eduanjianfeng_1987@126.com
Keywords: converter; nozzle angle; mixing gas blowing; BOF dust
Abstract: The hot experiment was carried out to study the effect of lance nozzle and mixing gas blowing on steelmaking.
Acknowledgement This work is sponsored by the National Natural Science Foundation of China (51034008) and Major Project of the National 12th Five-Year Plan of China (2011BAC06B10).
Metallurgical and Materials Transactions B-Process Metallurgy and Materials Processing Science, Vol. 27(1996): p.35-41
Journal of University of Science and Technology Beijing. 2007, Vol. 29(2007): p 77-80.
Acknowledgement This work is sponsored by the National Natural Science Foundation of China (51034008) and Major Project of the National 12th Five-Year Plan of China (2011BAC06B10).
Metallurgical and Materials Transactions B-Process Metallurgy and Materials Processing Science, Vol. 27(1996): p.35-41
Journal of University of Science and Technology Beijing. 2007, Vol. 29(2007): p 77-80.
Online since: January 2012
Authors: J.L. Tang, C.Z. Cai, X.J. Zhu, G.L. Wang, D.F. Cao
Methods and Materials
Theory of SVR
Suppose a sample is represented by (x, y), where x is the independent variables, y the dependent one.
Ren, “Back propagation neural network (BPNN) prediction model and control strategies of methanogen phase reactor treating traditional Chinese medicine wastewater (TCMW),” Journal of Biotechnology, vol. 144, no. 1, pp. 70-74, 2009
Zhu and T.T Xiao, “Corrosion rate prediction of 3C steel under different seawater environment by using support vector regression,” Corrosion Science vol. 51, pp. 349-355, 2009
Kennedy, “A new Optimizer using Particle swarm optimization,” Proceedings of The 6th International Symposium on Micro Machine and Human Science, pp. 39-43, 1995
Shang, “Prediction of tungsten tensile strength with artificial BP neural network method," Materials Science and Technology, vol. 14, pp. 63-65, 2006.
Ren, “Back propagation neural network (BPNN) prediction model and control strategies of methanogen phase reactor treating traditional Chinese medicine wastewater (TCMW),” Journal of Biotechnology, vol. 144, no. 1, pp. 70-74, 2009
Zhu and T.T Xiao, “Corrosion rate prediction of 3C steel under different seawater environment by using support vector regression,” Corrosion Science vol. 51, pp. 349-355, 2009
Kennedy, “A new Optimizer using Particle swarm optimization,” Proceedings of The 6th International Symposium on Micro Machine and Human Science, pp. 39-43, 1995
Shang, “Prediction of tungsten tensile strength with artificial BP neural network method," Materials Science and Technology, vol. 14, pp. 63-65, 2006.
Online since: March 2018
Authors: Guan Cheng Jiang, Wu Ge Cui, Yinbo He
Experimental
Materials.
Acknowledgments We would like to thank for the financial support from Foundation for Innovative Research Groups of the Natural Science Foundation of China (51221003), National Natural Science Foundation of China (51474231 and U1262201) and Foundation from Major Programs of China during 13th Five-Year Plan Period (2016ZX05022-001-001-001, 2016ZX05040-001-002 and 2016ZX05020-004) for this work.
Applied Clay Science 2016;121–122:1-8
Journal of Petroleum Science and Engineering 2015;135:505-514
ACS Applied Materials & Interfaces 2015;7:5006-5016
Acknowledgments We would like to thank for the financial support from Foundation for Innovative Research Groups of the Natural Science Foundation of China (51221003), National Natural Science Foundation of China (51474231 and U1262201) and Foundation from Major Programs of China during 13th Five-Year Plan Period (2016ZX05022-001-001-001, 2016ZX05040-001-002 and 2016ZX05020-004) for this work.
Applied Clay Science 2016;121–122:1-8
Journal of Petroleum Science and Engineering 2015;135:505-514
ACS Applied Materials & Interfaces 2015;7:5006-5016
Online since: November 2012
Authors: Qiao Lin Xiao, Fen Lü
Field test shows that the radar reflected wave group of wave characteristic in volcanic lava can distinguish different geological layer reflection wave group, and via studying their relationship and change trend, to achieve the purpose of geological interpretation, and determine the adverse lava geology development stages, for design and construction to provide the reliable foundation material, effective use of survey for the design and construction of the guidance function.
Accordingly, according to special lava adverse geology causes of formation and development characteristics, combined with drilling verification material, divided into four harmful lava geology types in the abnormal area: Independent big lava cavity, Small cavity concentrate area, Lava crack development area, the strongly weathered lava rock area[5].
Acknowledgements Department of transportation of transportation construction science and technology project.
Journal of Engineering Geology,2002(10):595~603.
Accordingly, according to special lava adverse geology causes of formation and development characteristics, combined with drilling verification material, divided into four harmful lava geology types in the abnormal area: Independent big lava cavity, Small cavity concentrate area, Lava crack development area, the strongly weathered lava rock area[5].
Acknowledgements Department of transportation of transportation construction science and technology project.
Journal of Engineering Geology,2002(10):595~603.
Online since: May 2012
Authors: Ke Qiang Ding
It are formed in any type of incomplete combustion of oil, coal, petrol, wood, garbage, tobacco, meats or other carboncontaining organic materials.
Materials and methods soil Topsoil (0-20cm) was collected from Changshu Ecological Experimental Station, Institute of Soil Science, Chinese Academy of Sciences.
China Environmental Science. 2005,25(5):602-606 (in Chinese)
Journal of Agro-environmental Science. 2005, 24(4): 766~770 (in Chinese) [16] Etsuko K., Tsukasa M., Shyoji M., Masahiko T.
Materials and methods soil Topsoil (0-20cm) was collected from Changshu Ecological Experimental Station, Institute of Soil Science, Chinese Academy of Sciences.
China Environmental Science. 2005,25(5):602-606 (in Chinese)
Journal of Agro-environmental Science. 2005, 24(4): 766~770 (in Chinese) [16] Etsuko K., Tsukasa M., Shyoji M., Masahiko T.
Online since: January 2012
Authors: Wen Nian Xu, Gang Liu, Qiong Zhang, Shi Qing Zheng
Selected Properties of the Sandy Loam Soil
Particle size distribution % (µm)
OM
(g/kg)
CaCO3
(g/kg)
ESP
(%)
CEC
(cmol/kg)
<1
1-5
5-10
10-50
50-250
250-500
6.62
116
2.73
6.77
3.38
7.95
6.38
48.32
33.80
0.17
Materials and Methods
Experiment Design.
KJ2009B033, KJ2009A002), and the National Major Special Science and Technology Project for Water Pollution Control and Management (Grant No. 2008ZX07104-003-03-2).
Zhao, “alley-slope road erosion and its control measures in Wangdong gully experimental area located in Changwu County,” Journal of Soil and Water Conservation, vol. 8, pp. 29-35, 1994
Govers, “Relationship between discharge, velocity, and flow area for rills eroding in loose, non-layered materials,” Earth Surface Processes and Landforms, vol. 17, pp. 515-528, 1992
Zhu, “Preliminary study on mechanism of plant roots to increase the anti-scouribility on the Loess Plateau,” Science in China, vol. 35, pp. 1085-1092, 1992.
KJ2009B033, KJ2009A002), and the National Major Special Science and Technology Project for Water Pollution Control and Management (Grant No. 2008ZX07104-003-03-2).
Zhao, “alley-slope road erosion and its control measures in Wangdong gully experimental area located in Changwu County,” Journal of Soil and Water Conservation, vol. 8, pp. 29-35, 1994
Govers, “Relationship between discharge, velocity, and flow area for rills eroding in loose, non-layered materials,” Earth Surface Processes and Landforms, vol. 17, pp. 515-528, 1992
Zhu, “Preliminary study on mechanism of plant roots to increase the anti-scouribility on the Loess Plateau,” Science in China, vol. 35, pp. 1085-1092, 1992.
Online since: November 2011
Authors: Shu Qin He, Zi Cheng Zheng
Materials and methods
Soil and soil box design.
Plot preparation and rainfall simulation procedures were the same as described in the materials and methods section.
Acknowledgment The research was supported by the National Natural Science Foundation of China (Grant No. 40901138), supported by State Key Laboratory of Earth Surface Processes and Resource Ecology(Grant No. 2008-KF-05), supported by Key Laboratory of Mountain Hazards and Surface Process, Chinese Academy of Sciences(Grant No. 2008) and also supported by National Key Technology R&D Program in the 11th Five year Plan of china(Grant No. 2008BAD98B03).
[12] P.R.Bevington, D.K.Robinson, “Data Reduction and Error Analyses for the Physical Sciences, third edition,”McGraw-Hill Companies, Inc., New York, 2003 [13] F.
Jia, “On the method for measuring ground surface roughness and its effect upon runoff and erosion on the slope surface,”Journal of Northwest Forestry College , vol. 13, pp. 15-19, 1998
Plot preparation and rainfall simulation procedures were the same as described in the materials and methods section.
Acknowledgment The research was supported by the National Natural Science Foundation of China (Grant No. 40901138), supported by State Key Laboratory of Earth Surface Processes and Resource Ecology(Grant No. 2008-KF-05), supported by Key Laboratory of Mountain Hazards and Surface Process, Chinese Academy of Sciences(Grant No. 2008) and also supported by National Key Technology R&D Program in the 11th Five year Plan of china(Grant No. 2008BAD98B03).
[12] P.R.Bevington, D.K.Robinson, “Data Reduction and Error Analyses for the Physical Sciences, third edition,”McGraw-Hill Companies, Inc., New York, 2003 [13] F.
Jia, “On the method for measuring ground surface roughness and its effect upon runoff and erosion on the slope surface,”Journal of Northwest Forestry College , vol. 13, pp. 15-19, 1998