Showing 41 - 60 results of 74,649 for search '(((( ((b largest) OR (a large)) decrease ) OR ( i large decrease ))) OR ( i rate increased ))', query time: 1.99s Refine Results
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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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    <b>Supporting data for manuscript</b> "<b>Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins</b>" by Kira Shaw (18796168)

    Published 2025
    “…<p dir="ltr">The CSV file 'Eyreetal_DrainingVein_SourceData' contains the averaged time series traces and extracted metrics from individual experiments used across Figures 1-5 in the manuscript "Voluntary locomotion induces an early and remote hemodynamic decrease in the large cerebral veins". …”
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    Required increase/scale-up of control efforts to meet the targets; scenario 1: Yearly percentage increase in τ to reduce R<sub>0</sub> to 1 by 2035 and scenario 2: Scale up in decline rates of ϕ and ω to meet the End TB incidence targets given that R<sub>0</sub> is also reduced to 1 for model trajectories in Fig 1. by Diepreye Victoria Ayabina (11719488)

    Published 2021
    “…<p>Required increase/scale-up of control efforts to meet the targets; scenario 1: Yearly percentage increase in τ to reduce R<sub>0</sub> to 1 by 2035 and scenario 2: Scale up in decline rates of ϕ and ω to meet the End TB incidence targets given that R<sub>0</sub> is also reduced to 1 for model trajectories in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0257242#pone.0257242.g001" target="_blank">Fig 1</a>.…”
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    Species richness (<i>SR</i>, upper panels) and Shannon’s entropy (<i>SE</i>, lower panels) vs. the rate in which new species are trying to invade the community, <i>νN</i>. by Immanuel Meyer (12306666)

    Published 2022
    “…A comparison between the case of <i>Q</i> = 10 [panels (b) and (e)] and <i>Q</i> = 3 [panels (a) and (d)] suggest that the crossover from the storage-dominated regime, where global competition is better, to the regime in which global competition acts to decrease biodiversity, occurs when the number of species is equal to the number of temporal niches. …”
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