Showing 5,401 - 5,420 results of 18,392 for search 'significant ((((((a decrease) OR (we decrease))) OR (nn decrease))) OR (mean decrease))', query time: 0.52s Refine Results
  1. 5401
  2. 5402

    Summary of correlations in previous studies. by Dan Kuang (136225)

    Published 2025
    “…The quantitative wastewater surveillance model offers a reliable means of estimating the number of infected individuals, which can be instrumental in informing policy decisions.…”
  3. 5403

    The characteristics of nine WWTPs. by Dan Kuang (136225)

    Published 2025
    “…The quantitative wastewater surveillance model offers a reliable means of estimating the number of infected individuals, which can be instrumental in informing policy decisions.…”
  4. 5404
  5. 5405
  6. 5406
  7. 5407
  8. 5408
  9. 5409
  10. 5410
  11. 5411
  12. 5412
  13. 5413
  14. 5414
  15. 5415
  16. 5416
  17. 5417

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  18. 5418

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  19. 5419

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  20. 5420

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”