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Online since: July 2016
Authors: Yu.A. Chesnokov, Andrey N. Dmitriev, Galina Yu. Vitkina, R.V. Petukhov, S.V. Kornilkov, A.E. Pelevin
The reducibility, durability, temperatures of a softening and melting of metallurgical iron ore raw materials are studied in vitro.
Melentyev, et al: Complex use of ores, Science, Russia (1976)
Shabalin: Titaniferous magnetite, deposits, metallurgy, chemical technology, Science, Russia (1986)
Petukhov, et al: The Characteristic of Ores and Concentrates of the Open Society “EVRAZ KGOK”, Advanced Materials Research, 834−836 (2014), p. 364-369
Pelevin, et al: Separate Processing of Natural Types of Ore of the Gusevogorsky field, Gornyi Zhurnal (Mining Journal) (2015).
Online since: August 2013
Authors: Zhong Liu, Peng Tao Liu, Xiang Mei Wei
Introduction The importance of polymer blending has been increased in recent years, because of the preparation of polymeric materials with desired properties, low basic cost, and improved processability[1-3].
Experimental Materials.
FT IR spectroscopy is a useful tool in determining specific functional groups or chemical bonds that exist in a material.
Miscibility study of chitosan/polyethylene glycol fumarate blends in dilute solutions, Journal of Applied Polymer Science, Vol. 127 (2013), p. 3514-3521
Miscibility studies on the blends of collagen/chitosan by dilute solution viscometry, European Polymer Journal, Vol. 43 (2007), 2066-2071.
Online since: August 2013
Authors: Niu Liu, Hong Sun, Wei Guo Zhu, Yu Ping Ma, Xue Gong
Introduction The modernization of material distribution is the direction of the future development of enterprises.
The forklift,which has the compact structure and the flexible operation, is the main tool for materials handing.
  [2] Beijing materials handling research institute, The Collection Of forklift's standard [M], China Machine Press, 1990: 205-208
"Model of case-based Industrial design scenario and its application", Chinese Journal of Mechanical Engineering, 2006, 42(12), 151-157
Journal of System Simulation, 2007, 19(12): 2720-2722
Online since: April 2012
Authors: Anthony J. DeArdo, C. Isaac Garcia, Chao Fang, Shi Hoon Choi
Journal of Materials Science, 2001. 36(Copyright 2001, IEE): p. 3833-54
Materials Science Forum, 2002. 408-412(Copyright 2003, IEE): p. 469-74
Materials Science & Engineering A (Structural Materials: Properties, Microstructure and Processing), 2004.
Journal of Materials Science and Technology, 2007. 23(2): p. 262-266
Materials Science & Engineering: A (Structural Materials: Properties, Microstructure and Processing), 2008. 485(Copyright 2008, The Institution of Engineering and Technology): p. 200-9.
Online since: December 2012
Authors: Yun Tao Cai, Jian Xun Liang
Design and Application of Network Management System for Sports Events JianXun Liang1, a, YunTao Cai2,b 1, 2Hebei University Science and Technology ,China akedaljx@163.com, bkd_cyt@126.com Keywords: Sports games, Network supervision system, Design and application of software Abstract.
Introduction At present computer technology is widely adopted to set up multi-level network management subsystems such as the real-time data acquisition, result processing, comprehensive information query, personnel and material management, and communications in domestic and international sports events.
The site which is a standard sports field was at the stadium of Hebei University of Science and Technology.
References [1] J.P.Liu: Journal of Wuhan Institute of Physical Education,Vol.39(2005)No.4,P.113( in chinese) [2] J.Kong: Journal of Wuhan Institute of Physical Education,Vol.41(2007)No.10,P.14( in chinese) [3] Y.Du: Journal of Xi′An Physical Education University ,Vol.26(2009)No.4,P.505( in chinese) [4] K.F.Wang: Journal of Jilin Institute of Physical Education,Vol.26(2010)No.6,P.77( in chinese) [5] Y.Xiao: Journal of Xi′An Physical Education University ,Vol.26(2009)No.6,P.668( in chinese) [6] Z.SH.Li: Journal of Eastern Liaoning University,Vol.18(2011)No.1,P.76( in chinese) [7] P.Qiao: Coal Technology,Vol.30(2011)No.3,P.221( in chinese) [8] Y.H.Wang,M.Yang: Journal of Physical Education,Vol.18(2011)No.6,P.78( in chinese) [9] W.H.Li,Y.T.Shi: Coal Technology,Vol.30(2011)No.2,P.204( in chinese) [10] B.Lu,L.L.Zhang: Coal Technology,Vol.31(2012)No.7,P.202( in chinese) [11] Y.Liu,CH.F.Tang: Video Engineering,Vol.35(2011)No.23,P.78( in chinese) [12] W.J.Li: Journal of Guangzhou Sport
University,Vol.31(2011)No.6,P.107( in chinese) [13] Y.Xiao: Journal of Shanghai Sport University,Vol.35(2011)No.3,P.20( in chinese) [14] L.Chen: Journal of Wuhan University of Technology,Vol.32(2010)No.21,P.131( in chinese) [15] W.Cui,T.Q.Li: Sport Science,Vol.23(2003)No.2,P.114( in chinese) [16] P.Wu,J.J.Le: Journal of Donghua University,Vol.32(2006)No.4,P.39( in chinese) [17] M.Shen: Journal of Wuhan University of Technology,Vol.38(2004)No.3,P.167( in chinese) [18] S.Zhang: Journal of Nanjing Institute of Physical Education,Vol.23(2009)No.3,P.105( in chinese) [19] Y.J.Huang: Journal of Beijing Sport University,Vol.30(2007)No.4,P.547( in chinese) [20] Y.Xiao: Journal of Beijing Sport University,Vol.34(2011)No.10,P.69( in chinese)
Online since: May 2023
Authors: Rajendra D. Kanphade, Ajjay S. Gaadhe, Ujwal R. Shirode
The material was brought to light because of its genuinely incredible electrochemical performance.
As a result, numerous other construction materials such as FinFETs, carbon nanotubes (CNT), and others have been extensively researched as a possible substitute for CMOS technology.
This work gives a comprehensive investigation of a 22nm CNTFET-based 10T SRAM to determine the effect of chirality, the number of tubes, pitch, oxide thickness, and various carbide materials on basically composed power, average write power, read delays, leakage, leakage power, including write delay.
Conclusion The use of the result of technological advancement materials in the CNTFET improves molecular electronics performance.
R. & Gamad, R. & Mishra, D “A single-ended read disturb-free ppn based 9T SRAM cell” Revue Roumaine des Sciences Techniques Serie Electrotechnique et Energetique.
Online since: October 2011
Authors: Mohamad Rusop, Puteri Sarah Mohamad Saad, Fazlinashatul Suhaidah Binti Zahid, Hazrin Zainal Mohd, Zurita Zulkifli, Suriani Abu Bakar
The use of carbon nanotubes as reinforcement filler-components is becoming more widespread for mechanical applications, which will increase the strength of polymeric materials [4].
Motta: Materials Forum, Vol. 32 (2008)
Premalal: Journal of Physics Vol. 8 (2007) p. 29
Sariciftci: Journal of Applied Physics Vol. 90 (2001)
Johnson: Current Opinion in Solid State and Materials Science Vol. 4 (1999), p. 28
Online since: September 2008
Authors: Yuji Noguchi, Masaru Miyayama, Muneyasu Suzuki, Tetsuo Uchikoshi
Strenuous efforts have been devoted to prepare grain-oriented (GO) ceramics of Bi4Ti3O12 (BiT) and related materials by hot forging [7-9] and templated grain growth method [10-13].
These raw materials were weighted with a composition of Bi5FeTi3O15.
Tani, Journal of the Ceramic Society of Japan, 114 (2006), p. 363
Kitazawa Advanced Engineering Materials, 3 (2001), p. 490
Suzuki, Journal of the Ceramic Society of Japan, 113 (2005), p. 26
Online since: October 2011
Authors: Jung A Kim, Han Seung Kim, Ji Sook Lim
Likewise, the HRP immobilized by inorganic materials was reported to remove phenols effectively [1].
Materials and methods Materials.
Preparation of nano-structural material.
Scott, Peroxidase-catalyzed removal of phenols from coal-conversion waste waters, Science, vol. 221 (1983), p.259-261
Sarhan, Immobilization of horseradish peroxidase on modified chitosan beads, International Journal of Biological Macromolecules. vol. 46 (2010), p. 324-330.
Online since: January 2026
Authors: Masaharu Shiratani, Kazuki Nagamine, Kizuku Ikeda, Daichi Wakita, Kunihiro Kamataki
As a solution to this, hard mask is being used [1]. a-C:H is one of such hard mask materials [2-5], because a-C:H films can be easily removed with oxygen [5, 6] and have high etching resistance.
Abadias et al., “Review Article: Stress in thin films and coatings: Current status, challenges, and prospects,” Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, vol. 36, no. 2, p. 020801, 2018, doi: 10.1116/1.5011790
Robertson, “Diamond-like amorphous carbon,” Materials Science and Engineering: R: Reports, vol. 37, no. 4–6, pp. 129–281, 2002, doi: 10.1016/S0927-796X(02)00005-0
Ohtake et al., “Properties and Classification of Diamond-Like Carbon Films,” Materials, vol. 14, no. 2, p. 315, 2021, doi: 10.3390/ma14020315
Freire, “Production and characterization of hydrogenated amorphous carbon thin films deposited in methane plasmas diluted by noble gases,” Materials Science and Engineering: B, vol. 112, no. 2–3, pp. 101–105, 2004, doi: 10.1016/j.mseb.2004.05.012