Showing 13,981 - 14,000 results of 106,665 for search '(( 50 ((we decrease) OR (mean decrease)) ) OR ( 5 ((wt decrease) OR (a decrease)) ))', query time: 1.57s Refine Results
  1. 13981

    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. …”
  2. 13982

    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. …”
  3. 13983

    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. …”
  4. 13984

    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. …”
  5. 13985

    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. …”
  6. 13986

    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. …”
  7. 13987

    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. …”
  8. 13988

    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. …”
  9. 13989
  10. 13990
  11. 13991
  12. 13992
  13. 13993
  14. 13994
  15. 13995
  16. 13996
  17. 13997

    Complete Family of Mono-, Bi-, and Trinuclear Re<sup>I</sup>(CO)<sub>3</sub>Cl Complexes of the Bridging Polypyridyl Ligand 2,3,8,9,14,15-Hexamethyl-5,6,11,12,17,18-hexaazatrinapth... by Michael G. Fraser (1705288)

    Published 2011
    “…The formation of the binuclear complex from the reaction of HATN-Me<sub>6</sub> with 2 equiv of Re(CO)<sub>5</sub>Cl in chloroform results in a 1:1 ratio of the syn and anti isomers. …”
  18. 13998
  19. 13999

    Evolutionary History of Atmospheric CO<sub>2</sub> during the Late Cenozoic from Fossilized <i>Metasequoia</i> Needles by Yuqing Wang (110531)

    Published 2015
    “…According to former research, this is a time when global temperature decreased sharply. Our results also indicated that from middle Miocene to Pleistocene, global CO<sub>2</sub> level decreased by more than 50 ppmv, which may suggest that CO<sub>2</sub> decrease and temperature decrease are coupled.…”
  20. 14000