Showing 761 - 780 results of 5,065 for search '(((thin OR spinal) OR angel) OR ((((ping OR peng) OR eng) OR ((pina OR spina) OR mingat)) OR pin))', query time: 0.22s Refine Results
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  2. 762

    Fire resistance for square tubular joints with and without chord reinforcement by Yang, J., Shao, Y. B., Cheng, C., Lie, S. T., Chiew, Sing Ping

    Published 2013
    “…The chord surface around the brace/chord weld toe for a square welded tubular joint is the critical position because failure occurs frequently at this location due to the weak stiffness in the transverse direction of the chord which is generally a thin-walled tube. To improve the load carrying capacity, the chord of a square tubular joint can be strengthened locally near the joint connection. …”
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    Conference Paper
  3. 763

    Influence of water content and anisotropy on the strength and deformability of low porosity meta-sedimentary rocks under triaxial compression by Li, Diyuan, Wong, Louis Ngai Yuen, Liu, Gang, Zhang, Xiao-Ping

    Published 2013
    “…It shows that the meta-sedimentary rocks have very low porosity, 0.18% for meta-siltstone and 0.53% for meta-sandstone on average. The thin section analysis reveals that the meta-siltstone contains more hydrophilic substances such as clay minerals than the meta-sandstone, and both two meta-sedimentary rocks are characterized by distinct beddings and laminae. …”
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    Journal Article
  4. 764
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    Curvature-regulated lipid membrane softening of nano-vesicles by Chng, Choon-Peng, Sadovsky, Yoel, Hsia, K. Jimmy, Huang, Changjin

    Published 2021
    “…Through systematic molecular dynamics simulations, we show that the vesicle membrane thins and softens with the decrease in vesicle size, which effectively counteracts the stiffening effects as already mentioned. …”
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    Journal Article
  6. 766

    Current state-of-the-art of non-reverse osmosis-like forward osmosis technology by Chang, Zhen Hong, Sum, Jing Yao, Lau, Woei Jye, Ang, Wei Lun, Teow, Yeit Haan, Ooi, Boon Seng, Yeap, Swee Pin

    Published 2024
    “…Forward osmosis (FO) has gained attention for its reduced fouling propensity. Traditional FO thin-film composite membranes, akin to reverse osmosis (RO)-like FO membranes, feature a dense and tight polyamide (PA) selective layer for high solute rejection but relatively low water permeability. …”
    Article
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