Showing 1,321 - 1,340 results of 31,999 for search '(( a ((((laser decrease) OR (linear decrease))) OR (larger decrease)) ) OR ( a large decrease ))', query time: 0.79s Refine Results
  1. 1321
  2. 1322

    S1 Data - by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  3. 1323
  4. 1324
  5. 1325

    An Experimental Investigation of Evaporation of Ethanol–Water Droplets Laden with Alumina Nanoparticles on a Critically Inclined Heated Substrate by Pallavi Katre (10796035)

    Published 2022
    “…The pinning effect caused by nanoparticles results in a larger perimeter and surface area for the nanoparticle-laden droplets, enhancing the evaporation rates and significantly decreasing the lifetime of the nanoparticle-containing droplets compared to the no-loading case. …”
  6. 1326

    An Experimental Investigation of Evaporation of Ethanol–Water Droplets Laden with Alumina Nanoparticles on a Critically Inclined Heated Substrate by Pallavi Katre (10796035)

    Published 2022
    “…The pinning effect caused by nanoparticles results in a larger perimeter and surface area for the nanoparticle-laden droplets, enhancing the evaporation rates and significantly decreasing the lifetime of the nanoparticle-containing droplets compared to the no-loading case. …”
  7. 1327

    An Experimental Investigation of Evaporation of Ethanol–Water Droplets Laden with Alumina Nanoparticles on a Critically Inclined Heated Substrate by Pallavi Katre (10796035)

    Published 2022
    “…The pinning effect caused by nanoparticles results in a larger perimeter and surface area for the nanoparticle-laden droplets, enhancing the evaporation rates and significantly decreasing the lifetime of the nanoparticle-containing droplets compared to the no-loading case. …”
  8. 1328

    An Experimental Investigation of Evaporation of Ethanol–Water Droplets Laden with Alumina Nanoparticles on a Critically Inclined Heated Substrate by Pallavi Katre (10796035)

    Published 2022
    “…The pinning effect caused by nanoparticles results in a larger perimeter and surface area for the nanoparticle-laden droplets, enhancing the evaporation rates and significantly decreasing the lifetime of the nanoparticle-containing droplets compared to the no-loading case. …”
  9. 1329

    Closed loop stimulation (CLS) simulation results. by Muhammad Mushtaq (788834)

    Published 2024
    “…The stimulation cue was less effective with a larger time delay (180 ms) compared to a smaller time delay (120 ms). …”
  10. 1330

    Analysis of dopant diffusion in molten germanium induced by pulsed nd : yag laser by Mousa, Ali M. [علي مطشر موسى]

    Published 1995
    “…Laser - induced diffusion of various dopant elements into intransic germanium based on the dipping of Ge into dopant solution, have been used to produce doped ge layer using yag pulse laser with 300us duration ( A, = 1.664(1 m), Four point probe measurments of the layer conductance were used to study the effect of the doping controlled parameters mainly laser flunce, dopant solution, and annealing conditions. …”
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  11. 1331

    Crack number evolution curve when Ic = 0.75. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  12. 1332

    Crack number evolution curve when Ic = 0.25. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  13. 1333

    Model of numerical calculation. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  14. 1334

    Crack number evolution curve when <i>I</i><sub>c</sub> = 0. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  15. 1335

    Meso crack evolution law when Ic = 0.5. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  16. 1336

    Meso crack evolution law when <i>I</i><sub>c</sub> = 0. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  17. 1337

    Meso crack evolution curve when Ic = 0.75. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  18. 1338

    Crack number evolution curve when Ic = 0.5. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  19. 1339

    Meso crack evolution law when Ic = 0.25. by Lina Ge (718319)

    Published 2024
    “…The results show that the peak stress, cracking stress and dilatancy stress of coal sample decrease in a linear function law with the increase of load eccentricity coefficient. …”
  20. 1340

    Image_1_Photobiomodulation With Blue Laser Inhibits Bladder Cancer Progression.tif by Yuqi Xia (11575009)

    Published 2021
    “…A significant decrease in cell viability was observed in a density-dependent manner after blue laser irradiation at > 4 J/cm<sup>2</sup> in both bladder cancer cell lines. …”