Showing 601 - 620 results of 18,058 for search 'significant ((((gap decrease) OR (((step decrease) OR (we decrease))))) OR (a decrease))', query time: 0.61s Refine Results
  1. 601

    Experimental Investigation of the Impact of Mixed Wettability on Pore-Scale Fluid Displacement: A Microfluidic Study by Abdullah AlOmier (20402765)

    Published 2024
    “…Despite its common occurrence, the impact of mixed wettability on immiscible fluid displacement at the pore scale remains poorly understood, creating a gap in effective modeling and prediction of fluid behavior in porous media. …”
  2. 602

    Results of SD-TOPSIS application ‐ combination A. by Roman Vavrek (13200141)

    Published 2024
    “…Based on the performed analyses, we can see that significant differences result from their reduction. …”
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    Actin-Targeted Magnetic Nanomotors Mechanically Modulate the Tumor Mechanical Microenvironment for Cancer Treatment by Xing Fan (88299)

    Published 2025
    “…Cancer-associated fibroblasts (CAFs) and tumor cells, which internalize ∼69.3% of ABP-MNs, are significantly tuned under MF with signs of a 7-fold decrease in tumor matrix stiffness, increased immune cell infiltration, and 95.8% tumor growth inhibition. …”
  5. 605

    Phosphorylation as an Effective Tool to Improve Stability and Reduce Toxicity of Antimicrobial Peptides by Zufang Ba (11036420)

    Published 2024
    “…Phosphorylation can reduce toxicity and improve the stability of AMPs. Based on these, we designed a series of peptides and their corresponding phosphorylated forms. …”
  6. 606

    The raw data for Fig 8A. by Hongjoo An (21703199)

    Published 2025
    “…Luciferase assay and human and mouse brain multi-omics data show that, during the differentiation of OL precursor cells (OPCs) into OLs, the enhancer activity of Sox10-E1 does not change while that of Sox10-E2 decreases significantly. Chromatin interaction data indicate that the two <i>Sox10</i> enhancers lie close to the border of the <i>Sox10</i> topologically associating domain (TAD). …”
  7. 607

    Establishment of a diabetic rat model. by Lan Zeng (638254)

    Published 2025
    “…Accordingly, we measured VEGF gene expression and found that it was significantly increased in the retinas of diabetic rats (<a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0312791#pone.0312791.g003" target="_blank">Fig 3A</a>). …”
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    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  11. 611

    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  12. 612

    Structure of a trial. by Marcel F. Hinss (14675457)

    Published 2024
    “…While learning effects may have negated the impact of mental fatigue across the 5 experimental blocks, a significant decrease in performance was observed within blocks. …”
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    Significance analysis data. by Lei Zhu (16642)

    Published 2025
    “…The results indicate that: (1) The manifestation of mining pressure in gangue backfill mining is influenced by factors such as mining height and backfill collapse ratio; (2) Under the support of coal gangue, the concentrated stress in the coal seam significantly decreases, forming an arched shape according to the mining stages; (3) The range of plastic failure in the coal seam remains relatively stable under gangue backfill mining, with the plastic zone of the roof plate exhibiting a strip-like distribution; (4) Both range analysis and variance analysis revealed that the sensitivity ranking is backfill collapse ratio > mining height > elastic modulus. …”
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