Showing 1,701 - 1,720 results of 2,282 for search '((((pin OR ping) OR ying) OR pinge) OR (((pink OR (shinae OR shina)) OR pinga) OR min))', query time: 0.20s Refine Results
  1. 1701
  2. 1702

    Densification behaviour and sintering mechanisms of Cu- or Co-doped SnO2 : a comparative study by Zhang, T. S., Kong, Ling Bing, Song, X. C., Du, Z. H., Xu, W. Q., Li, S.

    Published 2014
    “….% Cu- or Co-doped SnO2 ceramics could reach over 95% relative density when sintered to 1250 °C with a heating rate of 5 °C min−1. It was found that both CoO4/3- and CuO-doped SnO2 follow the same mass transport mechanism – viscous flow sintering during early-stage sintering. …”
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    Journal Article
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  15. 1715

    Divergent reactivity of phosphapalladacycles toward E-H (E = N, P, As) bonds by Tay, Wee Shan, Li, Yongxin, Pullarkat, Sumod A., Leung, Pak-Hing

    Published 2022
    “…In the latter, HAsPh2 afforded the preligands of monomeric, dimeric, bidentate, and tridentate complexes of Pd in excellent yields of 95-98% within 30 min at room temperature. Key reaction steps for the intramolecular insertion of As-H into the Pd-C bond were outlined, and the effects of regioisomerism on the ortho-protonation pathway were evaluated.…”
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    Journal Article
  16. 1716
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  19. 1719

    Purification and initial characterization of the CbbQ-CbbO protein complex from acidithiobacillus ferrooxidans, a possible rubisco activation system of chemoautotrophic bacteria. by Guo, ZhiJun.

    Published 2013
    “…AfCbbQ2O2 was stimulated by inhibited form II rubisco in a concentration dependent manner and had maximum activity of 65.7 min-1. This result was consistent with the behavior of the genuine activase CbbX and supports the role of AfCbbQ2O2 as a potential rubisco activase candidate. …”
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    Final Year Project (FYP)
  20. 1720

    Enhancement of flow boiling using 3D printed porous structures by Tan, Gan Teng

    Published 2015
    “…The maximum steady state flow boiling heat transfer of 1.50 kW/m2⋅K was obtained with the "Octet" surface, at pump revolution of 100 rpm, which translates to a flow rate of 0.30 L/min.…”
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    Final Year Project (FYP)