Search alternatives:
linear decrease » linear increase (Expand Search)
nn decrease » a decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
wt decrease » we decrease (Expand Search), a decrease (Expand Search), awd decreased (Expand Search)
_ decrease » _ decreased (Expand Search)
5 wt » _ wt (Expand Search), 5 ht (Expand Search), i wt (Expand Search)
linear decrease » linear increase (Expand Search)
nn decrease » a decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
wt decrease » we decrease (Expand Search), a decrease (Expand Search), awd decreased (Expand Search)
_ decrease » _ decreased (Expand Search)
5 wt » _ wt (Expand Search), 5 ht (Expand Search), i wt (Expand Search)
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Factors associated with decreased FVC by multiple linear regression analysis.
Published 2015“…<p>R<sup>2</sup> =. 39</p><p>Factors associated with decreased FVC by multiple linear regression analysis.…”
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Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s.
Published 2023“…<p>Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s.…”
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Time allocation may not decrease with price for a non-linear microscopic utility of leisure.
Published 2014“…A small and a high reward intensity are shown. Reward rate decreases hyperbolically with price, eventually asymptoting. …”
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Decreased remyelination initiation is observed in Scribble cKO mice following focal demyelination in corpus callosum.
Published 2015“…Fewer remyelinated axons were observed in corpus callosum in the lesion area in Scribble cKO mice (E) relative to controls (D) as quantified in F; 0.4–0.5 μm: WT = 80.0% ± 9.8%, cKO = 41.3% ± 8.9% myelinated; 0.5–0.6 μm: WT = 79.4% ± 6.3%, cKO = 41.5% ± 9.5% myelinated; 0.6–0.7 μm: WT = 91.6% ± 3.0%, cKO = 44.3% ± 8.7% myelinated; >0.7 μm: WT = 92.7% ± 1.9%, cKO = 47.9% ± 2.5% myelinated. …”
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Tunable Actuation of Humidity-Driven Artificial Muscles via Graphene Nanofillers
Published 2022Subjects: -
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Tunable Actuation of Humidity-Driven Artificial Muscles via Graphene Nanofillers
Published 2022Subjects: