Showing 1 - 20 results of 82,806 for search '(( 50 ((n decrease) OR (_ decrease)) ) OR ((( 10 we decrease ) OR ( _ step decrease ))))', query time: 1.19s Refine Results
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    Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s. by Djaloul Karboua (16510091)

    Published 2023
    “…<p>Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s.…”
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    Juvenile demyelination leads to a substantial decrease in potassium currents in PV interneurons of the PFC. by Sara Hijazi (21656615)

    Published 2025
    “…TEA-sensitive currents were specifically decreased in PV interneurons from mice that received cuprizone treatment compared to control mice (<i>group x voltage two-way repeated measures: n = 10,14 cells from 5 mice per group: F(13,286) = 5.082, p < 0.0001</i>). …”
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    GSK343 decreased tumor stemness. by Laura V. Bownes (10276762)

    Published 2021
    “…Treatment with GSK343 significantly decreased tumorsphere formation by both the COA3 (A) and COA6 (B) cells, representing a decrease in stem cell-like phenotype. …”
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    Image_2_Relative Diazotroph Abundance in Symbiotic Red Sea Corals Decreases With Water Depth.png by Arjen Tilstra (6915227)

    Published 2019
    “…Consequently, coral-associated diazotroph communities may exhibit distinct activity patterns across a water depth gradient. We thus compared relative abundances of diazotrophs in the tissues of two common hard coral species, Podabacia sp. and Pachyserisspeciosa, along their water depth distribution (10–30 m and 30–50 m, respectively) in the Central Red Sea. …”
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    Image_1_Relative Diazotroph Abundance in Symbiotic Red Sea Corals Decreases With Water Depth.tif by Arjen Tilstra (6915227)

    Published 2019
    “…Consequently, coral-associated diazotroph communities may exhibit distinct activity patterns across a water depth gradient. We thus compared relative abundances of diazotrophs in the tissues of two common hard coral species, Podabacia sp. and Pachyserisspeciosa, along their water depth distribution (10–30 m and 30–50 m, respectively) in the Central Red Sea. …”
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