Showing 1 - 20 results of 50,175 for search '(((( ((c larger) OR (c large)) decrease ) OR ( _ greater decrease ))) OR ( a large increases ))', query time: 1.14s Refine Results
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    Normalized synergy increased with greater recurrence and decreased with greater feedback. by Samantha P. Sherrill (11114128)

    Published 2021
    “…(B) Curves representing rows shown in A, plotted with errorbars computed across networks, show that synergy increased as the number of recurrent edges increased. (C) Curves representing columns shown in A, plotted with errorbars computed across networks, show that synergy decreased as the number of feedback edges increased. …”
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    Decrease of soil acidity has greater effects than increase of aboveground carbon inputs on soil organic carbon in terrestrial ecosystems of China under nitrogen enrichment by xiaofei Lu (11679673)

    Published 2021
    “…Increased SOC in terrestrial ecosystems was closely associated with decreased soil pH, which reduced soil C losses by limiting microbial <a>degradation</a>.…”
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    Norm ISWSVR: A Data Integration and Normalization Approach for Large-Scale Metabolomics by Xian Ding (421647)

    Published 2022
    “…More importantly, Norm ISWSVR also allows a low frequency of QCs, which could significantly decrease the burden of a large-scale experiment. …”
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    The number of expected vaccinations decreases with the expected vaccination time, whereas the peak of infections increases. by Simon K. Schnyder (16632244)

    Published 2023
    “…Brighter colours indicate higher 〈<i>s</i>(<i>t</i><sub><i>v</i></sub>)〉. Note the nonlinear increase of <i>n</i> on the y-axis. C) Relatedly, we show the peak of infections max<sub><i>t</i></sub>(<i>i</i>(<i>t</i>)) as a heat map as function of the expected vaccination time 〈<i>t</i><sub><i>v</i></sub>〉 for the same range of vaccine arrival distributions <i>p</i><sub><i>n</i></sub> as in B). …”
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    Data from: Large subsurface carbon stocks in a long-term no-tillage site are vulnerable to potential mineralization by Qiuping Peng (20147290)

    Published 2024
    “…</p> <p>Results showed that SOC concentrations declined with depth, but the fraction that was mineralized in 350-day laboratory incubations increased with depth. We found 51% larger stocks of readily mineralized SOC stocks for the 30-153 cm depth (18.3 ± 4 Mg C ha<sup>-1</sup>) compared to 0-30 cm (12.1 ± 1.6 Mg C ha<sup>-1</sup>), when summing the kinetic pools that had transit times of up to 2 years. …”
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