Showing 13,641 - 13,660 results of 102,485 for search '(( 50 ((teer decrease) OR (mean decrease)) ) OR ( 5 ((wt decrease) OR (a decrease)) ))', query time: 1.38s Refine Results
  1. 13641
  2. 13642

    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. …”
  3. 13643

    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. …”
  4. 13644

    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. …”
  5. 13645
  6. 13646

    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. …”
  7. 13647

    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. …”
  8. 13648

    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. …”
  9. 13649

    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. …”
  10. 13650

    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. …”
  11. 13651

    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. …”
  12. 13652

    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. …”
  13. 13653

    AE monitoring system. 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. …”
  14. 13654

    MTS-370.25 fatigue resting system. 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. 13655

    Schematic diagram of the AE testing system. 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. 13656

    Strain at different positions 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. …”
  17. 13657
  18. 13658
  19. 13659
  20. 13660