يعرض 1 - 20 نتائج من 139 نتيجة بحث عن '(( significantly ((a decrease) OR (larger decrease)) ) OR ( significantly lower decrease ))~', وقت الاستعلام: 0.60s تنقيح النتائج
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    Scheme of g-λ model with larger values λ. حسب Zhanfeng Fan (20390992)

    منشور في 2024
    "…The stress-deformation model of the single uncoupled joint (g-λ model with λ ≥ 1) is employed to depict the nonlinearity of uncoupled joints, with a greater value of the parameter λ signifying a lower degree of non-linearity in the joint model curve. …"
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    Fig 6 - حسب Teagan McMahon (20108036)

    منشور في 2024
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    Histological scoring system of burned dermis. حسب Omid Mehrpour (9385929)

    منشور في 2024
    "…On day 21, the wound size in the Opium 5% group was significantly larger than that in the SSD group. Significantly lower serum levels of MDA were observed in all groups compared to the SSD group on days 2 and 10. …"
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    Histological scoring system of burned epidermis. حسب Omid Mehrpour (9385929)

    منشور في 2024
    "…On day 21, the wound size in the Opium 5% group was significantly larger than that in the SSD group. Significantly lower serum levels of MDA were observed in all groups compared to the SSD group on days 2 and 10. …"
  17. 17

    Ignition delay process shot by high-speed camera. حسب Lei Bai (631944)

    منشور في 2025
    "…The main findings of this study are as follows: (1) As the temperature of the hot surface increases, the ignition delay time generally shows a decreasing trend, with 450°C being a critical turning point; (2) There is an overlap between ignition and non-ignition cases within a specific range, forming a possible ignition zone, and the <i>R</i>² values of the fitting equations for the upper and lower boundaries are both above 95%, indicating a good fit. (3) The fractal dimension can effectively quantify the geometric complexity of the flame’s outer contour, thereby characterizing the stability of the flame’s combustion. …"
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    Data disclosure (Bai - manuscript). حسب Lei Bai (631944)

    منشور في 2025
    "…The main findings of this study are as follows: (1) As the temperature of the hot surface increases, the ignition delay time generally shows a decreasing trend, with 450°C being a critical turning point; (2) There is an overlap between ignition and non-ignition cases within a specific range, forming a possible ignition zone, and the <i>R</i>² values of the fitting equations for the upper and lower boundaries are both above 95%, indicating a good fit. (3) The fractal dimension can effectively quantify the geometric complexity of the flame’s outer contour, thereby characterizing the stability of the flame’s combustion. …"
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    Experimental bench and corresponding facility. حسب Lei Bai (631944)

    منشور في 2025
    "…The main findings of this study are as follows: (1) As the temperature of the hot surface increases, the ignition delay time generally shows a decreasing trend, with 450°C being a critical turning point; (2) There is an overlap between ignition and non-ignition cases within a specific range, forming a possible ignition zone, and the <i>R</i>² values of the fitting equations for the upper and lower boundaries are both above 95%, indicating a good fit. (3) The fractal dimension can effectively quantify the geometric complexity of the flame’s outer contour, thereby characterizing the stability of the flame’s combustion. …"
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    Three classic combustion stages of the flame. حسب Lei Bai (631944)

    منشور في 2025
    "…The main findings of this study are as follows: (1) As the temperature of the hot surface increases, the ignition delay time generally shows a decreasing trend, with 450°C being a critical turning point; (2) There is an overlap between ignition and non-ignition cases within a specific range, forming a possible ignition zone, and the <i>R</i>² values of the fitting equations for the upper and lower boundaries are both above 95%, indicating a good fit. (3) The fractal dimension can effectively quantify the geometric complexity of the flame’s outer contour, thereby characterizing the stability of the flame’s combustion. …"