Showing 1 - 20 results of 15,487 for search '(((( b large increases ) OR ( ((b laser) OR (_ laser)) decrease ))) OR ( _ largest decrease ))', query time: 0.83s Refine Results
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    Laser Induced Shockwave to Study Cell Injury by Xindong Zheng (22435458)

    Published 2025
    “…Shockwaves were used to simulate mechanical stress and induce cell death, with a focus on the role of lysosomal enzyme Cathepsin B. Acridine orange staining revealed that cells closest to the shockwave epicenter experienced the greatest decrease in lysosomal intensity, indicating degradation.…”
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    Drag Reduction of Anisotropic Superhydrophobic Surfaces Prepared by Laser Etching by Yanjing Tuo (7255637)

    Published 2019
    “…In this research, the anisotropic superhydrophobic surface is prepared on a stainless steel surface by laser etching, and the drag reduction property of the anisotropic surface is studied by a self-designed solid–liquid interface friction test device. …”
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    Drag Reduction of Anisotropic Superhydrophobic Surfaces Prepared by Laser Etching by Yanjing Tuo (7255637)

    Published 2019
    “…In this research, the anisotropic superhydrophobic surface is prepared on a stainless steel surface by laser etching, and the drag reduction property of the anisotropic surface is studied by a self-designed solid–liquid interface friction test device. …”
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    How To Maximize Birefringence and Nonlinearity of π‑Conjugated Cyanurates by Jing Lu (120666)

    Published 2019
    “…Materials with large birefringence (Δ<i>n</i>) are highly needed by fiber-optic isolators, whereas crystals showing strong second-order harmonic generation (SHG) are the key component for all-solid-state laser devices. …”
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    Investigation of the ageing conditions of PEEK powder for the selective laser sintering process by Yuqing Guo (10923862)

    Published 2023
    “…Further, the ageing mechanism involved chain crosslinking within molecular chains in all gases but chain breakage in air. Further, laser power required for SLS decreased with the increase in holding time. …”
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    Fig 4 - by Naoya Ishibashi (18722999)

    Published 2024
    Subjects:
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    Fig 1 - by Naoya Ishibashi (18722999)

    Published 2024
    Subjects: