Showing 1,981 - 2,000 results of 14,107 for search '(( significant decrease decrease ) OR ( significantly ((i decrease) OR (a decrease)) ))~', query time: 0.66s Refine Results
  1. 1981

    Finite element model of shot peening. by Huashen Guan (20454677)

    Published 2024
    “…After shot peening, the wear resistance of the sample significantly improved, and the amount of wear significantly decreased. …”
  2. 1982

    Wear morphology of the UT sample. by Huashen Guan (20454677)

    Published 2024
    “…After shot peening, the wear resistance of the sample significantly improved, and the amount of wear significantly decreased. …”
  3. 1983

    Surface roughness of various samples. by Huashen Guan (20454677)

    Published 2024
    “…After shot peening, the wear resistance of the sample significantly improved, and the amount of wear significantly decreased. …”
  4. 1984
  5. 1985
  6. 1986
  7. 1987
  8. 1988
  9. 1989

    Reinforced sample destruction mode. by Xiaoyan Ding (291429)

    Published 2025
    “…The suggested optimised parameters are as follows: a filling rate of 3 mL/min, a cementitious solution concentration of 0.5 mol/L to 1 mol/L, and a reasonable number of filling. …”
  10. 1990
  11. 1991
  12. 1992
  13. 1993

    Videofluoroscopic swallowing study parameters. by Rie Asayama (693361)

    Published 2025
    “…Histological analysis demonstrated marked variability in muscle fiber size and a high frequency of central nuclei. Additionally, decreased expression of chloride channel 1 was observed in the masseter muscle, suggesting the presence of myotonia. …”
  14. 1994
  15. 1995

    Antimicrobial Activity of Glycyrrhizinic Acid Is pH-Dependent by Mathieu Joos (20331128)

    Published 2024
    “…Glycyrrhizin (GA) is an antimicrobial that can form pH-dependent hydrogels due to the three carboxyl groups of GA that differ in p<i>K</i><sub>a</sub> value. The influence of GA protonation on the antimicrobial activity, however, has never been studied before. …”
  16. 1996
  17. 1997
  18. 1998
  19. 1999
  20. 2000