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Online since: February 2014
Authors: Florian Quantmeyer, Xiao Bo Liu-Henke
With lithium-ion cells there are a vast number of possible combinations of active materials for the electrodes.
Concerning cathode materials, [2] offers a comprehensive overview.
Table 1 displays the main characteristics of these cathode materials.
Table 1: Properties of different cathode materials for lithium-ion cells, taken from [1].
Whittingham, Lithium Batteries and Cathode Materials, Chemical Reviews 104 (2004), 4271-4301
Online since: January 2014
Authors: Xiang Lilan Zhang, Ji Ping Sun, Xu Hui Huang, Zhi Gang Luo
A Novel Weighted Dynamic Time Warping for Light Weight Speaker-Dependent Speech Recognition in Noisy and Bad Recording Conditions Xianglilan Zhang1, a, Jiping Sun2,b , Xuhui Huang3,c and Zhigang Luo4,b 1National Laboratory for parallel and distributed processing, School of Computer Science, National University of Defense Technology, Changsha, Hunan, 410073, China; 2David R.
Cheriton School of Computer Science, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada; 2Voice Enabling Systems Technology, Waterloo, Ontario, N2L 6N8, Canada; 3National Laboratory for parallel and distributed processing, School of Computer Science, National University of Defense Technology, Changsha, Hunan, 410073, China; 4National Laboratory for parallel and distributed processing, School of Computer Science, National University of Defense Technology, Changsha, Hunan, 410073, China.
Lightweight speaker-dependent (SD) automatic speech recognition (ASR) is a promising solution for the problems of possibility of disclosing personal privacy and difficulty of obtaining training material for many seldom used English words and (often non-English) names.
Chapaneri, "Spoken digits recognition using weighted MFCC and improved features for dynamic time warping," International Journal of Computer Application, vol. 40, no. 3, pp. 6-12, 2012
Li, "Merge-weighted Dynamic Time Warping for Language-Independent Speaker-Dependent Embedded Speech Recognition," Journal of Computer Sicence and Techonology, 2013 (submitted)
Online since: January 2006
Authors: Shuzo Otsuka, Yoshihisa Nakata, Takeshi Saito, Hiroki Takahashi, Keishi Tobinai, Torao Kemi
Molten Slag Fine Aggregate Molten slag fine aggregate targeted in this study was a product of a public melting processing plant in Chiba pref. and the raw materials are domestic wastes, residue from recycling plants and human excrement sludge.
Melting and solidification method is a direct melting, gasification-melting system with a vertical shaft furnace where raw materials are directly melted in a high temperature reduction environment at a temperature from 1700 to 1800 ℃.
Materials used for the molten slag fine aggregate mortar test are shown in Table 2.
Taking into account the general quality variation in constructions, materials segregation was within the acceptable range.
[5] Koshikawa, S.: Application of molten slag to fine aggregate of concrete, Concrete Science and Technology, 11(2), 2000, pp.39-47
Online since: September 2016
Authors: Hélène Carré, Céline Perlot, Atef Daoud, Bassem Aidi, Md Jihad Miah
[3] Felicetti, R., Colombo, M., New NDT techniques for the assessment of fire-damaged concrete structures, Fire Safety Journal, Vol. 42, Issues 6-7, Sept.
“The Determination of the Permeability of Concrete to Oxygen by the Cembureau Method - A Recommendation,” Materials and Structures (1989), 22, pp. 225-230
"Relation of mechanical properties of powder metals and their porosity and the ultimate properties of porous metal–ceramic materials".
"Strength of porous materials".
[18] Lian C., Zhuge Y., Beecham S., "The relationship between porosity and strength for porous concrete" Construction and Building Materials 25 (2011) 4294–4298
Online since: October 2011
Authors: Ute Ploska, Georg Berger, F. Dombrowski, R. Hoffmann, Heidi Marx
Berger1 1Federal Institute for Materials Research and Testing, D-12200 Berlin, Germany felix.dombrowski@bam.de, ute.ploska@bam.de, rita.hoffmann@bam.de, heidi.marx@bam.de, georg.berger@bam.de Keywords: Calcium alkaline phosphate cement, gelatin, compressive strength, figuline, particle size Abstract.
Besides, calcium phosphate cements provide the opportunity for bone grafting using alloplastic materials, which are unlimited in quantity and provide no risk of infectious diseases [3-5].
Materials and Methods The calcium alkaline phosphate Ca2KNa(PO4)2 (denominated GB14), which was used as inorganic base material, is an in-house product and already described in literature [9,10].
Dorozhkin; Materials (2009), 2, pp 221-291 [3] M.
Spring; Journal of material sciences 5 (1970), pp 340-344 [9] D.
Online since: March 2023
Authors: Ruth Aryati Rue Dima, Laura Anastasi Seseragi Lapono, Frederika Rambu Ngana, Andreas Christian Louk
Volume rendering with ray casting can describe the subtle material structure [5].
Acknowledgments This research is funded by the Faculty of Sciences and Engineering, University of Nusa Cendana (Grants No.: 1/UN15.15.2.PPK/SPP/FST/III/2022).
Zhu, 3D Visualization and Simulation in Surgical Planning System of Orbital Hypertelorism Journal of medical systems 35, 617 (2009). doi:10.1007/s10916-009-9399-x
Nagy, Rapid Development of Medical Imaging Tools with Open-Source Libraries,Journal of digital imaging 20, 83 (2007). doi:10.1007/s10278-007-9062-3
Lindseth, GPU-based multi-volume ray casting within VTK for medical applications,International journal of computer assisted radiology 10, 293 (2015)
Online since: January 2011
Authors: Bing Hua Yan, Hai Jun Yang, Jian Hong Wei, Lin Luo
Materials Reagents. 4-nonylphenol polyethoxylates (NPnEO, purity>99%) with an average ethoxylation degree of 9-10 was purchased from Sigma-Aldrich Company and its CAS NO. is 9016-45-9.
Acknowledgments This research was supported by Graduate Innovation Fund of Hunan Province (CX2010B299) and Natural Science Foundation of Hunan Province, Hunan China.
[6] Martin Hesselsoe, Dennis Jensen, Kim Skals, et al: Environ Sci Technol Vol. 35(2001), p.3695-3700 [7] Dachs J, Van Ry DA, Eisenreich SJ: Environ Sci Technol Vol.33 (1999), p.2676-2679 [8] Toshimichi Maeda, Kazuhide Hayakawa, Mu You, et al: Microbes and Environments Vol. 20(2005), p.253-257 [9] Jonkers N, Knepper T, Voogt PD: Environ Sci Technol, Vol.35 (2001), p.335-340 [10] H Maki, N Masuda, Y Fujiwara, et al: Vol. 60(1994), p.2265-2271 [11] Shams Tabrez Khan, Yasuyoshi Nakagawa, Shigeaki Harayama: International Journal of Systematic and Evolutionary Microbiology Vol.58 (2008), p.1670-1674 [12] Frederick C.
Smith: Journal of Bacteriol Vol.119 (1974), p.736-747 [13] GEORGE M.
Online since: May 2011
Authors: Zhi Hua Wang, Chong Shi Gu, Guo Xing Chen
The material properties of concrete are shown in Table 1.
The material properties for the foundation soil are shown in Table 2.
Acknowledgements The authors appreciate the financial support from the China Postdoctoral Science Foundation under Grant No20080431063.
Journal of Tongji University, 2004, 32(1): 1-5.
International Journal of Impact Engineering, 2009, 36(6):965-974.
Online since: September 2013
Authors: Tatacipta Dirgantara, Andi Isra Mahyuddin, Sandro Mihradi, Fulgentius Ferryanto
Introduction Human motion has long been investigated for several applications, such as medical rehabilitation, medical diagnostic, sport science, and even in product design [1,2,3,4,5].
Stanic, "Standardization of Kinematic Gait Measurements and Automatic Pathological Gait Pattern Diagnostics," Scandinavian Journal of Rehabilitation Medicine, vol. 9, pp. 95-105, 1977
Tsai, "A Versatile Camera Calibration Technique for High-Accuracy 3D Machine Vision Metrology Using Off-the-Shelf TV Cameras and Lenses," IEEE Journal of Robotics and Automation, pp.
Mahyuddin, "Gait Parameters Determination by 2D Optical Motion Analyzer System," Applied Mechanics and Materials, pp. 123-129, 2011
Online since: April 2014
Authors: Hong Wei Tian
According to related laws and regulations, based on the typical causes of safety accidents in high-rise building construction and a complete overview on the construction safety situations, the paper uses the “4M1E” principle and builds a 3-layer index system of safety management evaluation from four aspects which are “Man, Machine & Material, Method and Environment”.
Table 1 Construction safety management system of high-rise buildings Target layer First layer Second layer Expert 1 Expert 2 Expert 3 Expert 4 Expert 5 Safety management system on the construction sites of high-rise buildings U personnel management system U1 Safety inspection system U11 90 85 90 80 90 Safety education and training U12 70 80 85 70 75 Safety management department U13 75 75 80 70 70 Safety fund safeguard system U14 80 95 80 85 80 Safety production responsibility system U15 60 55 75 70 65 Machine & Material management U2 Facilities & protective equipment management U21 80 85 90 80 75 Large mechanical equipment loading & unloading safety control U22 50 60 55 65 70 Mechanical equipment reliability testingU23 80 80 85 90 85 Mechanical equipment maintenance U24 90 95 85 80 85 Safety technique management U3 safety technical disclosure U31 70 60 65 70 65 construction management plan U32 80 85 80 75 80 Specialized construction scheme U33 85 80 95 90 80 Safety regulation for technical
[4] Xianzhi Lv, Jianyun Ma, Kun Tao, et al: Journal of Safety Science and Technology (In Chinese), Vol. 7 (2011), p. 138
[7] Tao Chen: Academic Journal of Daqing Normal University (In Chinese), Vol. 28 (2008), p. 79
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