Search alternatives:
greatest decrease » greater decrease (Expand Search), treatment decreased (Expand Search), greater increase (Expand Search)
rate increased » greater increase (Expand Search)
a marked » a marker (Expand Search), _ marked (Expand Search), _ market (Expand Search)
a market » _ market (Expand Search), a marker (Expand Search)
greatest decrease » greater decrease (Expand Search), treatment decreased (Expand Search), greater increase (Expand Search)
rate increased » greater increase (Expand Search)
a marked » a marker (Expand Search), _ marked (Expand Search), _ market (Expand Search)
a market » _ market (Expand Search), a marker (Expand Search)
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Differentially expressed genes (DEGs)<sup>a</sup> showing the greatest fold changes from each potato tissue: 10 with greatest increase in expression and 10 with greatest decrease in expression.
Published 2025“…<p>Differentially expressed genes (DEGs)<sup>a</sup> showing the greatest fold changes from each potato tissue: 10 with greatest increase in expression and 10 with greatest decrease in expression.…”
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Thousand-fold increase in O<sub>2</sub> electroreduction rates with conductive MOFs
Published 2022Subjects: -
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Thousand-fold increase in O<sub>2</sub> electroreduction rates with conductive MOFs
Published 2022Subjects: -
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The velocity acceleration in the node depends on the parameter of r and increase folds of .
Published 2021“…<p>The x axis are the increase folds of the on-track rate for both the node and internode, increasing from to by ten folds.…”
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Scenario 1: Budget impact of a 20% decrease in the proposed market share of ENG.
Published 2024“…<p>Scenario 1: Budget impact of a 20% decrease in the proposed market share of ENG.…”
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No correlation between level of resistance (fold-increase in MIC) and growth rate, cell density or length of lag phase for all mutants.
Published 2019“…<p>No correlation between level of resistance (fold-increase in MIC) and growth rate, cell density or length of lag phase for all mutants.…”
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DBFOLD predicts increased folding flux through the N-terminal pathway in protein L as compared to protein G.
Published 2020“…<p>For protein G (red curve with markers and error bars) and protein L (green curve with markers and error bars), we compute the ratio of the rate at which the N-terminal hairpin folds starting from the unfolded state (transition ∅/<i>b</i> − ><i>a</i>(<i>b</i>)) to the rate at which the C-terminal hairpin folds (transition ∅/<i>b</i> − >(<i>b</i>)<i>c</i>). …”
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