Showing 601 - 620 results of 625 for search '(( 10 (((peter OR per) decrease) OR (((nn decrease) OR (mean decrease)))) ) OR ( 2 c decrease ))*', query time: 0.19s Refine Results
  1. 601

    Biodegradable thermoplastic polyurethane composites as potential plating systems in pediatric facial fractures by ALANI, AYA AHMED

    Published 2022
    “…Regarding the degradation, the TPU showed a better degradation rate than the composites as it lost around 30%of its mass after two months only, while the composites lost about 10%. …”
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    Implementing and Analyzing a Recursive Technique for Building Path Oblivious RAM by Rachid, Maan Haj

    Published 2018
    “…V., Shi, E., Fletcher, C., Ren, L., Yu, X., et al. (2013). Path oram: an extremely simple oblivious ram protocol. …”
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  7. 607

    Influence of Fines on the Compressibility of Surface Sands in Kuwait by Al-Abdulmuhsen, Shaikhah A. N.

    Published 2020
    “…Moreover, with increasing fines, the compressibility increased as demonstrated by the larger values of Cc at all degrees of relative compaction except at 100% and that the coefficient of consolidation Cv decreased with increasing fines, which means that as the fines increase the time required to achieve a certain degree of consolidation will also increase.…”
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    Experimental and Theoretical Investigation on Bond Behavior of Tensile Lap Spliced Basalt Fiber Reinforced Polymer Bars in High Strength Concrete Beams by Eltantawi, Islam Reda Mohamed

    Published 2020
    “…BFRP bars tension lap splices are necessary due to construction stoppages and limitations on rebar lengths. They also provide means to facilitate many forms of precast construction. …”
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    A MEASUREMENT CAMPAIGN TO INVESTIGATE THE EFFECT OF USING SOFT RAILPADS ON GROUND-BORNE VIBRATIONS FROM UNDERGROUND RAILWAYS by Alsharo, Anas

    Published 2023
    “…Insertion Gains were calculated from the acquired data, and the findings demonstrated that using the soft resilient railpads decreased the vibration level on the free surface by around 10 dB for the majority of frequencies in the range of 40-200 Hz.…”
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