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Online since: February 2014
Authors: Yong Wang, Kai Xiu Qin, Hua Gang Jian
Expression of p38 MAPK in acute lung injury induced by LPS in mice
Kai-xiu QINa, Yong Wangb, Hua-gang JIANc*
(Emergency department of the second affiliated hospital of Chongqing
university of medical sciences, Chongqing 400010)
a qinkaixiu@163.com; b 706815742@qq.com; c huagangjian@163.com
Materials and methods 1.1 Animals Kunming mice, aged 1 month old and weighing 18-22 g, were enrolled in the study.
Science, 259(5099): 1760-1763
Science, 265(5173): 808-811
Chinese Journal of Practical Medicine, 2004, 6(1): 1-3 in Chinese
Materials and methods 1.1 Animals Kunming mice, aged 1 month old and weighing 18-22 g, were enrolled in the study.
Science, 259(5099): 1760-1763
Science, 265(5173): 808-811
Chinese Journal of Practical Medicine, 2004, 6(1): 1-3 in Chinese
Online since: September 2004
Authors: Janice M. Dulieu-Barton, Keith Worden, Andrew Spencer
Dulieu-Barton
2,c
1
Dynamics Research Group, Department of Mechanical Engineering, University of Sheffield,
Mappin Street, Sheffield S1 3JD, UK.
2
School of Engineering Sciences, University of Southampton, Highfield, Southampton
SO17 1BJ, UK.
Stanley: Fatigue and Fracture of Engineering Materials Vol. 23 (2000), pp.301-313
Worden: Measurement Science and Technology Vol. 14 (2003), pp.176-183.
Erratum: Measurement Science and Technology Vol. 14 (2003), p.1845
Stanley: Journal of Strain Analysis Vol. 33, (1998) pp.93-104.
Stanley: Fatigue and Fracture of Engineering Materials Vol. 23 (2000), pp.301-313
Worden: Measurement Science and Technology Vol. 14 (2003), pp.176-183.
Erratum: Measurement Science and Technology Vol. 14 (2003), p.1845
Stanley: Journal of Strain Analysis Vol. 33, (1998) pp.93-104.
Online since: December 2011
Authors: Wen Yi Xie, Cheng Lu Wen, Qing Yuan Zhu, Hui Yin, Jun Jun Ye
Solar Powered Automatic Controlled Advertising Light Box System
Qingyuan Zhu1, a, Chenglu Wen2, b , Wenyi Xie1,c , Junjun Ye1,d and Hui Yin3,e
1Department of Mechanical and Electrical Engineering, Xiamen University, 361005, China
2 Department of Cognitive Science, Xiamen University, 361005, China
3 Xiamen Entry-Exit Inspection and Quarantine Bureau, 361013, China
azhuqy@xmu.edu.cn, bclwen@xmu.edu.cn, cxiewenyi0201@163.com, dyejj@xmu.edu.cn, exmemmayin@hotmail.com
Keywords: Solar energy; Automatic control; Sun tracking system; Advertising light box;
Abstract.
However, considering the material used in our light box prototype weights too much, future work can be performed to search lighter material for light box to save more energy.
Acknowledgment This paper is supported by the Fundamental Research Funds for the Central Universities of China (Grant No. 2011121045, Xiamen University) and the Science Foundation of Fujian Province of China (No. 2010J05123).
Chen: Journal of Thermal Science Vol. 20(3) (2011), p.254-259 [6] J.
However, considering the material used in our light box prototype weights too much, future work can be performed to search lighter material for light box to save more energy.
Acknowledgment This paper is supported by the Fundamental Research Funds for the Central Universities of China (Grant No. 2011121045, Xiamen University) and the Science Foundation of Fujian Province of China (No. 2010J05123).
Chen: Journal of Thermal Science Vol. 20(3) (2011), p.254-259 [6] J.
Online since: June 2013
Authors: Hong Ying Zhang, Chao Wang, Zheng Xing Ma, Xue Bin Li, Zheng Ze Wang
Table 2 Bolt support parameters
Bolt
Specification
(mm)
Material(m2)
Inter-row spacing(mm)
Tensile load(t)
Prestressed moment(N·m)
Roof bolt
Φ20×1800
L-rebar
800×800
12
90
Sides bolt
Φ20×1800
L-rebar
800×800
12
90
CFSTS is simulated by Beam element in FLAC3D, CFSTS support parameters is shown in table 3 by theoretical calculations[6].
[4]Huiming WANG: Coal Science and Technology, Vol. 36(2008)p. 28~55,in Chinese
[7]Linhai Han.: Concrete filled steel tubular structure, theory and practice [M] 2 Edition, Beijing: Science Press (2007),in Chinese
[8]Yanfa Gao, Bo Wang, Jun Wang, et al.: Chinese Journal of Rock Mechanics and Engineering, Vol. 29(2010) p. 2604-2609. in Chinese
[10]Jingyun Wu, Xuebin Li, Pengpeng MA, et al.: Coal Science and Technology, Vol. 38(2010) p. 23~26.in Chinese
[4]Huiming WANG: Coal Science and Technology, Vol. 36(2008)p. 28~55,in Chinese
[7]Linhai Han.: Concrete filled steel tubular structure, theory and practice [M] 2 Edition, Beijing: Science Press (2007),in Chinese
[8]Yanfa Gao, Bo Wang, Jun Wang, et al.: Chinese Journal of Rock Mechanics and Engineering, Vol. 29(2010) p. 2604-2609. in Chinese
[10]Jingyun Wu, Xuebin Li, Pengpeng MA, et al.: Coal Science and Technology, Vol. 38(2010) p. 23~26.in Chinese
Online since: February 2022
Authors: Vladimir Zhuchkov, V.A. Salina
Zhuchkov1,b
1Institute of Metallurgy of the Ural Branch of the Russian Academy of Sciences, Yekaterinburg, Russia
avalentina_salina@mail.ru, bntm2000@mail.ru
Keywords: oxide system, carbon, temperature, composition, thermodynamic simulation, manganese-containing alloy.
Matveev, Material and raw material base of ferroalloys and features of the development of their production in Russia, Chernye Metally. 1 (2020) 17-21
Xiao, Slags in ferroalloys production – review of present knowledge, The Journal of the South African Institute of Mining and Metallurgy. (2004) 429-437
Marshuk, Thermodynamic modeling of the reduction of manganese and silicon oxides by carbon, Messages of the Academy of Sciences of the Georgian SSR. 133(2) (1989) 325-328
Glushko (Eds.), Thermal Constants of Substances, Handbook, Iss. 6, Part 1, Academy of Sciences of the USSR, Moscow, 1974
Matveev, Material and raw material base of ferroalloys and features of the development of their production in Russia, Chernye Metally. 1 (2020) 17-21
Xiao, Slags in ferroalloys production – review of present knowledge, The Journal of the South African Institute of Mining and Metallurgy. (2004) 429-437
Marshuk, Thermodynamic modeling of the reduction of manganese and silicon oxides by carbon, Messages of the Academy of Sciences of the Georgian SSR. 133(2) (1989) 325-328
Glushko (Eds.), Thermal Constants of Substances, Handbook, Iss. 6, Part 1, Academy of Sciences of the USSR, Moscow, 1974
Online since: January 2012
Authors: Gang Zhang, Xiao Chuan Jing, Xiao Yin Wang, Hai Cheng Yang
The Application of Visualization Technology in Advancement Degree of Difficulty Computing Process
Gang Zhang 1, a Haicheng Yang 1,b Xiaochuan Jing 2,c Xiaoyin Wang 2,d
1Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University,127 Youyi Xilu, Xi’an Shaanxi 710072, China
2China Aerospace Engineering Consultation Center, Room 802, China Aerospace Science and Technology Edifice, Fu Cheng Street 16, Beijing 100048, China
azhanggangcasc@126.com, byanghaicheng_casc@126.com, cjingxch@gmail.com, dwxy690@126.com
Keywords: Advancement degree of difficulty; visualization technology; technology readiness level; status graph.
Mazzuchi, A comprehensive review and analysis of maturity assessment approaches for improved decision support to achieve efficient defense acquisition, Proceedings of the 2009 World Congress on Engineering and Computer Science. (2009) 1150-1157
Barowski, Integrating multiple approaches for interacting with dynamic data structure visualizations, Electronic Notes in Theoretical Computer Science. 224 (2009) 141-149
Braun, Technology readiness level, schedule risk, and slippage in spacecraft design, Journal of Spacecraft and Rockets. 45 (2008) 836-842
Li, Lead-alloy coolant technology and materials - technology readiness level evaluation, Progress in Nuclear Energy. 50 (2008) 140-151.
Mazzuchi, A comprehensive review and analysis of maturity assessment approaches for improved decision support to achieve efficient defense acquisition, Proceedings of the 2009 World Congress on Engineering and Computer Science. (2009) 1150-1157
Barowski, Integrating multiple approaches for interacting with dynamic data structure visualizations, Electronic Notes in Theoretical Computer Science. 224 (2009) 141-149
Braun, Technology readiness level, schedule risk, and slippage in spacecraft design, Journal of Spacecraft and Rockets. 45 (2008) 836-842
Li, Lead-alloy coolant technology and materials - technology readiness level evaluation, Progress in Nuclear Energy. 50 (2008) 140-151.
Online since: January 2012
Authors: Ying An, Yu Mei Ding, Wei Min Yang
The reason for that is the dissymmetry of structure in interaction region could generate transverse velocities which lead materials change in two chambers.
Funatsu, et al., Numerical simulation and experimental verification of nonisothermal flow in counter-rotating nonintermeshing continuous mixers, Polymer Engineering & Science. 40(2000) 365-375
Manas-Zloczower, Influence of design on mixing performance in an axial discharge continuous mixer-LCMAX4, Polymer Engineering and Science. 38(1998) 936-946
Bumn, Development of dispersion in rubber-particle compounds in international and continuous mixer, Journal of Applied Polymer Science. 102(2006) 3940-3943
Funatsu, et al., Numerical simulation and experimental verification of nonisothermal flow in counter-rotating nonintermeshing continuous mixers, Polymer Engineering & Science. 40(2000) 365-375
Manas-Zloczower, Influence of design on mixing performance in an axial discharge continuous mixer-LCMAX4, Polymer Engineering and Science. 38(1998) 936-946
Bumn, Development of dispersion in rubber-particle compounds in international and continuous mixer, Journal of Applied Polymer Science. 102(2006) 3940-3943
Online since: October 2010
Authors: Pavel Straka
Formation of tetra-coordinated aluminum
in the low temperature ashes
Pavel Straka
Institute of Rock Structure and Mechanics, v.v.i, Academy of Sciences of the Czech Republic,
V Holešovičkách 41, Praha 8, Czech Republic
email: straka@irsm.cas.cz
Keywords: aluminum, complex, low temperature ashes
Abstract.
Materials and Methods For investigations, bituminous coals from the Czech Republic were chosen.
This work was supported by the Grant Agency of Academy of Sciences of the Czech Republic under the project No.
Klika: Journal of the Czech Geological Society Vol. 44/3-4 (1999), p. 335
Klika: Journal of the Czech Geological Society Vol. 44/3-4 (1999), p. 343
Materials and Methods For investigations, bituminous coals from the Czech Republic were chosen.
This work was supported by the Grant Agency of Academy of Sciences of the Czech Republic under the project No.
Klika: Journal of the Czech Geological Society Vol. 44/3-4 (1999), p. 335
Klika: Journal of the Czech Geological Society Vol. 44/3-4 (1999), p. 343
Online since: October 2011
Authors: Zhou Fang Guo, Hua Zhang, Jin Hu, Xiao Wu Huang, Yang Luo
Materials and Methods
Engineering introduction.
Beijing: China Environmental Science Press, 2002 (In chinese) [7] Jianrong Zhu, Chunxin Liu, Jianzhong He, Xiasheng Gu.
Environmental Science & Technology, Vol. 31, No.5, May, 2008 (In chinese) [9] Ploszb G, Jobbagya A, Grady C P L.
Chinese Journal of Environmental Engineering, Vol.1, No.9, Sep, 2007 (In chinese) [12] Jun Yin, Jianhui Wang, Xuefeng Wang, Yancui Xie, Yufeng Huo, Xuejun Tan.
Chinese Journal of Environmental Engineering, vol.1, No.4, Apr., 2007 (In chinese) [13] Yanling Gao, Da Ma.
Beijing: China Environmental Science Press, 2002 (In chinese) [7] Jianrong Zhu, Chunxin Liu, Jianzhong He, Xiasheng Gu.
Environmental Science & Technology, Vol. 31, No.5, May, 2008 (In chinese) [9] Ploszb G, Jobbagya A, Grady C P L.
Chinese Journal of Environmental Engineering, Vol.1, No.9, Sep, 2007 (In chinese) [12] Jun Yin, Jianhui Wang, Xuefeng Wang, Yancui Xie, Yufeng Huo, Xuejun Tan.
Chinese Journal of Environmental Engineering, vol.1, No.4, Apr., 2007 (In chinese) [13] Yanling Gao, Da Ma.
Online since: February 2014
Authors: Hai Rong Wang, Xin Xin Li, Jian Bo Yan
The former reacts with the iron in the boiler materials to form FeCl, thereby causing corrosion.
Acknowledgements This work was financially supported by Guangzhou science and technology plan project(2013J4100114).
Pamir:Comparative pyrolysis and combustion kinetics of oil shale[J].Journal of Analytical and Applied Pyrolysis Vol.55(2) (2000), pp.185-194 [11] X.X.
Progress in Energy and Combustion Science Vol.33(6) (2007), pp.552-579 [14] B.
Journal of China Coal Society Vol.37(2) (2012), pp.310-315,in Chinese
Acknowledgements This work was financially supported by Guangzhou science and technology plan project(2013J4100114).
Pamir:Comparative pyrolysis and combustion kinetics of oil shale[J].Journal of Analytical and Applied Pyrolysis Vol.55(2) (2000), pp.185-194 [11] X.X.
Progress in Energy and Combustion Science Vol.33(6) (2007), pp.552-579 [14] B.
Journal of China Coal Society Vol.37(2) (2012), pp.310-315,in Chinese