Showing 1 - 20 results of 14,424 for search '(( a large decreases ) OR ( i largest decrease ))', query time: 0.35s Refine Results
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    Geographical distribution of large cities and small cities. by Saul Estrin (8629173)

    Published 2024
    “…The Figure reveals two patterns: 1) the maximum level of innovation is higher in large cities (2.53) than in small cities (2.02); 2) among large cities in <b>a</b>, innovation levels in general decrease with nightlight density. …”
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    DECREASE IN OFF-PEAK ELECTRICAL ENERGY DEMAND BY AGROINDUSTRIES DUE TO PHOTOVOLTAIC SOLAR GENERATION by Lucas de A. Viana (7234946)

    Published 2019
    “…These and other benefits constitute the so-called externality of the decrease in off-peak demand due to photovoltaic generation. …”
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    Supplementary Material for: Tea Consumption Is Associated with Decreased Disease Activity of Rheumatoid Arthritis in a Real-World, Large-Scale Study by Jin J. (3859486)

    Published 2020
    “…<b><i>Objectives:</i></b> The aim of this study was to explore the possible association of tea consumption with RA through a large-scale, real-world study. <b><i>Methods:</i></b> A total of 733 RA patients were investigated from June to December, 2016. …”
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    Observation of a Large Slip Effect in the Nanoscale Flow of Highly Viscous Supercooled Liquid Metals by Jun-Xiang Xiang (16751412)

    Published 2023
    “…Here, we report the observation of a large boundary slip in the nanoscale flow of highly viscous supercooled liquid metals (with viscosities of ≲10<sup>8</sup> Pa s), enabled by the hydrophobic treatment of smooth nanochannels. …”
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    Observation of a Large Slip Effect in the Nanoscale Flow of Highly Viscous Supercooled Liquid Metals by Jun-Xiang Xiang (16751412)

    Published 2023
    “…Here, we report the observation of a large boundary slip in the nanoscale flow of highly viscous supercooled liquid metals (with viscosities of ≲10<sup>8</sup> Pa s), enabled by the hydrophobic treatment of smooth nanochannels. …”
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    Unexpected Parabolic Temperature Dependency of CH<sub>4</sub> Emissions from Rice Paddies by Haoyu Qian (800177)

    Published 2022
    “…Global warming is expected to affect methane (CH<sub>4</sub>) emissions from rice paddies, one of the largest human-induced sources of this potent greenhouse gas. …”
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