Showing 161 - 180 results of 27,116 for search '(( 5 step decrease ) OR ((( 50 ((we decrease) OR (a decrease)) ) OR ( a point decrease ))))', query time: 0.91s Refine Results
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    Flow chart of the study procedures. by Kazuhiko Ikeuchi (9234268)

    Published 2023
    “…Pre-treatment spontaneous decrease of RPR titer was associated with a slower decrease in post-treatment RPR titer.…”
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    Comparison of the three attention steps. by Enming Zhao (3957782)

    Published 2024
    “…Through comparative evaluations with heatmap and regression-based models such as HRNet, HigherHRNet, DEKR, DEKRv2, and YOLOv5-pose, our method improves AP<sub>0.5</sub> by at least 0.4%, reduces the number of parameters by at least 0.4%, and decreases the amount of computation by at least 1.0 GFLOPs, achieving a harmonious balance between accuracy and efficiency. …”
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    Olaparib reverses the oxLDL-mediated decrease in co-immunoprecipitation of IκBα with RelA or p50. by Khamis Mustafa (17941332)

    Published 2024
    “…Relative band densities from three independent experiments were analyzed. (A) OxLDL decreased co-immunoprecipitation of IκBα with both RelA and p50, and olaparib reversed the effect of oxLDL on the dissociation of IκBα with RelA and p50. …”
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    DataSheet1_Decreasing viscosity and increasing accessible load by replacing classical diluents with a hydrotrope in liquid–liquid extraction.docx by Asmae El Maangar (19690522)

    Published 2025
    “…We show that using hydrotropes as a diluent decreases the viscosity of solutions by more than a factor of ten, even under high load by extracted cations. …”
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    Distribution Coefficients of the REEs, Sr, Y, Ba, Th, and U between α‑HIBA and AG50W-X8 Resin by Haoyu Li (1672648)

    Published 2020
    “…For all 19 elements, the distribution coefficients decrease with increasing acid concentration. For the REEs, a linear relationship is observed in log–log space between <i>K</i><sub>d</sub> values and α-HIBA molarity. …”
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    Neural networks classify states which differ in neuronal activity levels using ensembles of neurons that increase/decrease their activity in each state. by Nicholas A. Frost (10739821)

    Published 2021
    “…As a result, there is an increase (neurons 51:100) or decrease (neurons 1:50) in activity levels in State B compared to State A. …”
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