Showing 301 - 320 results of 71,316 for search '(( 5 ((nn decrease) OR (a decrease)) ) OR ( a ((fold decrease) OR (point decrease)) ))', query time: 0.85s Refine Results
  1. 301

    S5 Raw image - by Zhi Xuan Low (19270163)

    Published 2024
    “…Through the presence of an inclusion complex, a higher aqueous dispersion (65-fold) resulting in a higher drug content and an elevated release profile was achieved. …”
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    DPT3 Stat EDHS for five surveys. by Hailu Fekadu (17797638)

    Published 2024
    “…However, based on the subnational region level, significance difference (PAR) was found in all surveys: 59.7 (2000), 51.1 (2005), 52.2 (2011), 42.5 (2016) and 30.7 (2019). The interesting point of this finding was that, the value of absolute inequality measures (PAR) and (PAF), are shown a decreasing trends from 2000 to 2019, and the gap among the better of regions and poor regions becoming narrowed over the last 20 years. …”
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    S5 Data - by Christoph Anders (4068499)

    Published 2024
    “…<div><p>Hysteresis refers to a physical phenomenon in which the response or state of a system depends on both the input variable and its history. …”
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    Decreased Aβ42 halo overlaps with the decreased incidence of DNs in FO treated mice. by Milena Jović (6707702)

    Published 2019
    “…(E-H) In the FO-treated 5xFAD animals the decreased surface of the Aβ halo overlaps with the decreased incidence of swollen, dystrophic neurites.…”
  18. 318

    A Hierarchical Contact–Electrification Interface Based on Gradient Micro-/Nanostructured Hydrogel for Cardiovascular Disease Monitoring by Zhenqiu Gao (2564362)

    Published 2025
    “…Consequently, the gradient micro-/nanostructured hydrogel, fabricated via electric field induction, enables the sensor’s high-sensitivity region to reach 1.1–52.2 kPa, a 5-fold improvement over that of comparable sensors. …”
  19. 319

    A Hierarchical Contact–Electrification Interface Based on Gradient Micro-/Nanostructured Hydrogel for Cardiovascular Disease Monitoring by Zhenqiu Gao (2564362)

    Published 2025
    “…Consequently, the gradient micro-/nanostructured hydrogel, fabricated via electric field induction, enables the sensor’s high-sensitivity region to reach 1.1–52.2 kPa, a 5-fold improvement over that of comparable sensors. …”
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