Showing 7,181 - 7,200 results of 14,181 for search '(( significantly ((nn decrease) OR (mean decrease)) ) OR ( significantly increased decrease ))', query time: 0.57s Refine Results
  1. 7181
  2. 7182

    Participant flowchart. by Amalie Hundahl (22593238)

    Published 2025
    “…With increasing CHI scores, we observed a decrease in well-being (p = 0.004), and health-related quality of life (p=<0.0001–0.007). …”
  3. 7183
  4. 7184

    Model fit for childhood CHI subscales. by Amalie Hundahl (22593238)

    Published 2025
    “…With increasing CHI scores, we observed a decrease in well-being (p = 0.004), and health-related quality of life (p=<0.0001–0.007). …”
  5. 7185

    Dataset figure data. by Haiyong Wu (12857013)

    Published 2025
    “…The influence of load and operating mileage on the thickness of lubricating oil film is not significant. The oil storage rate gradually decreases with the operating mileage increases. …”
  6. 7186

    Dataset experiment data. by Haiyong Wu (12857013)

    Published 2025
    “…The influence of load and operating mileage on the thickness of lubricating oil film is not significant. The oil storage rate gradually decreases with the operating mileage increases. …”
  7. 7187

    Dataset image analysis data. by Haiyong Wu (12857013)

    Published 2025
    “…The influence of load and operating mileage on the thickness of lubricating oil film is not significant. The oil storage rate gradually decreases with the operating mileage increases. …”
  8. 7188
  9. 7189

    Investigating the Impact of Base Pair Mismatches on Cas13d Cleavage Efficiency Using Molecular Dynamics Simulations by Ye Liu (296340)

    Published 2025
    “…However, the presence of mismatches significantly undermines the cleavage efficiency of Cas13d to target RNA. …”
  10. 7190

    Figures. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  11. 7191

    Summary of solver settings. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  12. 7192

    Simulation parameters. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  13. 7193

    Geometric parameters of the centrifugal nozzle. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  14. 7194

    Data. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  15. 7195

    Typical structure of a centrifugal nozzle [25]. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  16. 7196

    Cross-sectional velocity distribution contour. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  17. 7197

    Mesh generation details. by Yanyu Cui (19173181)

    Published 2025
    “…As the inlet pressure increases from 0.2 MPa to 1.0 MPa, the nozzle outlet velocity increases by 127.0%, and the liquid film thickness decreases by 41.8%, improving atomization performance. …”
  18. 7198

    RFAConv working principle. by Pingping Yan (462509)

    Published 2025
    “…Compared to YOLOv8, our approach achieved improvements of 7.6% and 2.8% in mAP@0.5, and increases of 2.1% and 1.1% in mAP@0.5:0.95. Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  19. 7199

    PConv working principle. by Pingping Yan (462509)

    Published 2025
    “…Compared to YOLOv8, our approach achieved improvements of 7.6% and 2.8% in mAP@0.5, and increases of 2.1% and 1.1% in mAP@0.5:0.95. Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”
  20. 7200

    Improvement of SPPF to SPPF-R process. by Pingping Yan (462509)

    Published 2025
    “…Compared to YOLOv8, our approach achieved improvements of 7.6% and 2.8% in mAP@0.5, and increases of 2.1% and 1.1% in mAP@0.5:0.95. Furthermore, Parameters and GFLOPs were reduced by 10.0% and 23.2%, respectively, indicating a significant enhancement in detection accuracy along with a substantial decrease in both parameters and computational costs. …”