Showing 1 - 20 results of 101,452 for search '(( significant ((we decrease) OR (_ decrease)) ) OR ( significant sub increase ))', query time: 1.07s Refine Results
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    Data_Sheet_1_Pulmonary Exposure to Magnéli Phase Titanium Suboxides Results in Significant Macrophage Abnormalities and Decreased Lung Function.PDF by Dylan K. McDaniel (8054981)

    Published 2019
    “…Mice were exposed to the most frequently found Magnéli phases, Ti<sub>6</sub>O<sub>11</sub>, at 100 parts per million (ppm) via intratracheal administration. …”
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    Longer <i>L</i><sub><i>h</i></sub> significantly decreases and delays the peak of the sound-evoked CAPs of SGN fibers. by Maral Budak (6680351)

    Published 2021
    “…Shaded regions correspond to the standard error of the mean and dashed lines correspond to the peaks of each CAP, labeled with the same colors as the CAPs. The decreased peak amplitude and increased latency of CAP peak were significant for populations with <i>L</i><sub><i>h</i></sub> > 2 μm. …”
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    Longer <i>L</i><sub><i>u</i></sub> significantly decreases and delays the peak of the sound-evoked CAPs of SGN fibers. by Maral Budak (6680351)

    Published 2021
    “…The increases in widths were only minimal, however significant for the heterogeneous population, where 10 μm ≤ <i>L</i><sub><i>u</i></sub> ≤ 20 μm (*p<0.05, **p<0.01, #p<0.001). …”
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    Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes by Shakkira Erimban (6882539)

    Published 2025
    “…Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…”
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    Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes by Shakkira Erimban (6882539)

    Published 2025
    “…Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…”
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