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Online since: July 2014
Authors: Xiao Lin Zhu, Jian Ping Liu, Xiao Nan Zhang
In each trial, the valid time lasts from 3s to 9s, sampling frequency is 128Hz, valid data is 896 data points.
Online since: September 2013
Authors: Meng Yang Li, Gui Cheng Huo
Of amino acids of protein Homology proposed function of gene prodect ORF1 256-468 71 NS* ORF2 87-272 62 1e-11 hypothetical protein pCIZ2_10 ORF3 927-1661 245 2e-137 putative plasmid replication protein ORF4 363-896 178 1e-59 putative plasmid replication protein ORF5 177-359 61 2e-16 hypothetical protein pCIZ2_10 NS* indicates no significant homologied in the database fragment.
Online since: November 2014
Authors: Yan Qiu, De Tian Wan, Yi Wang Bao, Hua Zhao, Yuan Tian
., 37: 891-896, 2011
Online since: August 2015
Authors: Tanakorn Khumtong, Rachsak Sakdanuphab
Mahapatra, Study of the effect of plasma current density on the formation of titanium nitride and titanium oxynitride thin films prepared by reactive DC magnetron sputtering, Vacuum 84 (2010) 896–901
Online since: February 2012
Authors: Ji Rong Wang, Mei Li Yu, Jun Li, Wei Cui, Da Li
Mordent Netherlands,896-901(2007)
Online since: August 2007
Authors: Juan Alfonso Beltrán-Fernández, R.G. Rodríguez-Cañizo, G. Urriolagoitia-Sosa, A. González-Rebatú, M. Dufoo-Olvera, Luis Héctor Hernández-Gómez, G. Urriolagoitia-Calderón
Orthop Res, 5:356-365. (1987) [11] ORTOSINTESE, Products Catalogue, Rua Friedrich Von Voith, 896 - Jaragua, Brasil. (2006) [12] Trecant & Et.
Online since: June 2012
Authors: Lan Hua Zhou, Fu Hong Zeng, Wei Gen Wu, Shu Li Zhang
Some conclusions may be obtained by analysis of Fig. 3 as follows: the required concentration of CO used to reduce Fe2O3 and Fe2TiO5 is very low indicating Fe2O3 and Fe2TiO5 easily reduced; the starting temperature of the reduction of Fe3O4 to FeO, FeO to Fe, Fe2TiO4 to FeTiO3, FeTiO3 to FeTi2O5, FeTiO3 to Fe, FeTi2O5 to Fe and FeO·V2O3 to Fe are 661℃, 681℃, 752℃, 810℃, 846℃, 879℃ and 896℃, respectively.
Online since: May 2012
Authors: Takashi Tsuji, Akimasa Kinoshita, Kenji Fukuda, Noriyuki Iwamuro, Hiroshi Kimura, Tatsuro Tsuyuki, Kazuo Tezuka
Forum 645-648 (2010) 893-896.
Online since: May 2011
Authors: Jin Dong Qu, Jia Hui Peng, Bai Zhan Li
Abdel-Aal: Journal of Colloid and Interface Science, 2004, (270) :99–105 [12] Jiahui Peng, Jianxin Zhang, Mingfeng Chen : Journal of the Chinese Ceramic Society, 2008, 36(7): 896-900.
Online since: December 2010
Authors: Guan Sheng Chen, Ren Yuan Zhang, Shi Dong Li, Li Zhang, Feng Li
Table 1 Al-Si alloy temperature /K /mm =850K =860K /kW/m2 100 150 200 100 150 200 5 873 885 896 886 897 908 10 888 906 925 899 920 940 15 908 931 958 919 947 973 Temperatures of Al-Si alloy in the inner of absorber and on the top of heat storage body were compared in Fig. 5 where the data in black curve were results of the numerical simulation and , while the data in blue curve were results of the test and .