Showing 8,701 - 8,720 results of 64,663 for search '(( 5 a decrease ) OR ( 5 ((((point decrease) OR (fold decrease))) OR (nn decrease)) ))', query time: 1.05s Refine Results
  1. 8701
  2. 8702
  3. 8703

    Table1_Tipping points of ancient Japanese Jomon trade networks from social network analyses of obsidian artifacts.xlsx by Fumihiro Sakahira (14330940)

    Published 2023
    “…This improved the readability and interpretability of the analysis results and decreased the distortion of results owing to a small sample of sites. …”
  4. 8704
  5. 8705
  6. 8706

    DataSheet2_A comprehensive assessment of RCP4.5 projections and bias-correction techniques in a complex coastal karstic aquifer in the Mediterranean.docx by Maria Rosaria Alfio (17004993)

    Published 2023
    “…Results of future climate projections show a decrease in precipitation of about 6% and an increase in temperature of 2°C until the end of this century, compared to the historical period (1971–2005). …”
  7. 8707

    DataSheet1_A comprehensive assessment of RCP4.5 projections and bias-correction techniques in a complex coastal karstic aquifer in the Mediterranean.docx by Maria Rosaria Alfio (17004993)

    Published 2023
    “…Results of future climate projections show a decrease in precipitation of about 6% and an increase in temperature of 2°C until the end of this century, compared to the historical period (1971–2005). …”
  8. 8708
  9. 8709
  10. 8710
  11. 8711

    KAIST low-speed wind tunnel and its components. by Elliott Donghyun Kim (19469973)

    Published 2024
    “…Mie scattering, known for effectively decreasing short-wave infrared light, was employed by utilizing water aerosols having a diameter of 1 to 5 μm. …”
  12. 8712

    Scattering efficiency by particle diameter. by Elliott Donghyun Kim (19469973)

    Published 2024
    “…Mie scattering, known for effectively decreasing short-wave infrared light, was employed by utilizing water aerosols having a diameter of 1 to 5 μm. …”
  13. 8713

    Relative transmission rate by wavelength. by Elliott Donghyun Kim (19469973)

    Published 2024
    “…Mie scattering, known for effectively decreasing short-wave infrared light, was employed by utilizing water aerosols having a diameter of 1 to 5 μm. …”
  14. 8714

    Failure mode of the sample. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  15. 8715

    Positions of AE probes and strain gauges. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  16. 8716

    Sampling site. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  17. 8717

    Received AE waves. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  18. 8718

    Test schemes for soft rocks. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  19. 8719

    Failure mode of the sample. by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”
  20. 8720

    S1 Table - by Zhenhua Wang (426041)

    Published 2025
    “…At the same temperature, shear strength increases at a rate of 5.6 MPa/°C with increasing confining pressure; as freezing temperature decreases, the shear strength increases at 0.34 MPa/°C, and cohesion increases at 0.6 MPa/°C. …”