Showing 5,721 - 5,740 results of 18,038 for search 'significantly ((((largest decrease) OR (teer decrease))) OR (((we decrease) OR (a decrease))))', query time: 0.62s Refine Results
  1. 5721

    CSB elemental content. by Shiqi Zhang (709298)

    Published 2025
    “…Total volatile fatty acid concentration decreased with increasing CSB levels. However, no significant changes were observed in microbial diversity or total DNA copy numbers of bacteria and methanogens. …”
  2. 5722

    Rumen fermentation parameters. by Shiqi Zhang (709298)

    Published 2025
    “…Total volatile fatty acid concentration decreased with increasing CSB levels. However, no significant changes were observed in microbial diversity or total DNA copy numbers of bacteria and methanogens. …”
  3. 5723

    Rumen microflora gene primer information. by Shiqi Zhang (709298)

    Published 2025
    “…Total volatile fatty acid concentration decreased with increasing CSB levels. However, no significant changes were observed in microbial diversity or total DNA copy numbers of bacteria and methanogens. …”
  4. 5724

    Feed nutrient disappearance rate. by Shiqi Zhang (709298)

    Published 2025
    “…Total volatile fatty acid concentration decreased with increasing CSB levels. However, no significant changes were observed in microbial diversity or total DNA copy numbers of bacteria and methanogens. …”
  5. 5725

    Composition and nutrient level of the basal diet. by Shiqi Zhang (709298)

    Published 2025
    “…Total volatile fatty acid concentration decreased with increasing CSB levels. However, no significant changes were observed in microbial diversity or total DNA copy numbers of bacteria and methanogens. …”
  6. 5726
  7. 5727
  8. 5728

    Stress-strain curves. by Yongsheng Liu (142720)

    Published 2024
    “…In addition, dry-wet cycling and chemical corrosion lead to an increase in the internal pores of the rock samples and a decrease in the energy storage capacity. Nevertheless, the proportion of energy loss increases with the number of dry and wet cycles, with the proportion of energy loss in acidic media increasing from 35.61% to 41.63%, indicating that the plastic deformability of marble increases under the action of chemical corrosion and dry and wet cycles. …”
  9. 5729

    Dissipated energy ratio. by Yongsheng Liu (142720)

    Published 2024
    “…In addition, dry-wet cycling and chemical corrosion lead to an increase in the internal pores of the rock samples and a decrease in the energy storage capacity. Nevertheless, the proportion of energy loss increases with the number of dry and wet cycles, with the proportion of energy loss in acidic media increasing from 35.61% to 41.63%, indicating that the plastic deformability of marble increases under the action of chemical corrosion and dry and wet cycles. …”
  10. 5730
  11. 5731

    Marble specimens. by Yongsheng Liu (142720)

    Published 2024
    “…In addition, dry-wet cycling and chemical corrosion lead to an increase in the internal pores of the rock samples and a decrease in the energy storage capacity. Nevertheless, the proportion of energy loss increases with the number of dry and wet cycles, with the proportion of energy loss in acidic media increasing from 35.61% to 41.63%, indicating that the plastic deformability of marble increases under the action of chemical corrosion and dry and wet cycles. …”
  12. 5732
  13. 5733

    Online travelogues information from Ctrip. by Weiya Zhang (346410)

    Published 2025
    “…Findings indicate that: (1) Locations mentioned in Tang and Song poetry show significant spatial differentiation, with urban areas displaying a clustered distribution and suburbs showing scattered hotspots. (2) The number of locations referenced in Song poetry increased significantly compared to Tang poetry, suggesting that Nanjing’s economic growth heightened the city’s appeal and inspired more literary output. (3) Song Dynasty poetry reflects a shift toward more neutral and negative emotions, with a marked decrease in positive expressions. …”
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  16. 5736
  17. 5737
  18. 5738
  19. 5739
  20. 5740