Showing 9,461 - 9,480 results of 55,503 for search '(( a ((((mean decrease) OR (greater decrease))) OR (linear decrease)) ) OR ( a largest decrease ))', query time: 1.13s Refine Results
  1. 9461
  2. 9462

    Alcohol and breast cancer risk: Middle-aged women’s logic and recommendations for reducing consumption in Australia by Samantha B. Meyer (555077)

    Published 2019
    “…We identified a low level of awareness of alcohol and breast cancer risk, and confusion related to alcohol as a risk for breast cancer, but not <i>always</i> causing breast cancer. …”
  3. 9463

    Excitation wave in a one-dimensional chain. by Hesam Setareh (5487965)

    Published 2018
    “…The other parameters of the model (including <i>w</i><sub>exc</sub> and <i>w</i><sub>inh</sub>) are the same as in <b>B</b>. <b>G</b>) Decreasing the amplitude of the dynamic threshold <i>γ</i><sub>1</sub>(<i>t</i>) together with a readjustment of the parameter <i>U</i> of short-term plasticity influences the difference of activation times (horizontal axis). …”
  4. 9464

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  5. 9465

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  6. 9466

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  7. 9467

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  8. 9468

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  9. 9469

    A Conductive Bamboo Fabric with Controllable Resistance for Tailoring Wearable Sensors by Menghao Li (727830)

    Published 2022
    “…The volume resistivity (ρ<sub>v</sub>) decreases with increasing weft and linear densities, too. …”
  10. 9470
  11. 9471

    Probing the pH Sensitivity of OprM: Insights into Metastable States and Semi-Open Conformation by Rakesh Kumar Roy (12519890)

    Published 2023
    “…Efflux pumps are specialized transport proteins that play a key role in the bacterial defense against a wide spectrum of antibiotics. …”
  12. 9472

    Probing the pH Sensitivity of OprM: Insights into Metastable States and Semi-Open Conformation by Rakesh Kumar Roy (12519890)

    Published 2023
    “…Efflux pumps are specialized transport proteins that play a key role in the bacterial defense against a wide spectrum of antibiotics. …”
  13. 9473

    Probing the pH Sensitivity of OprM: Insights into Metastable States and Semi-Open Conformation by Rakesh Kumar Roy (12519890)

    Published 2023
    “…Efflux pumps are specialized transport proteins that play a key role in the bacterial defense against a wide spectrum of antibiotics. …”
  14. 9474

    Microhardness of various samples. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  15. 9475

    Shot peening process parameters. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  16. 9476

    Schematic diagram of pin-disk wear. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  17. 9477

    Parameters of the sliding wear test. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  18. 9478

    Finite element model of shot peening. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  19. 9479

    Wear morphology of the UT sample. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”
  20. 9480

    Surface roughness of various samples. by Huashen Guan (20454677)

    Published 2024
    “…The shot peening intensity increased with increasing particle diameter; a greater shot peening intensity corresponded to a greater surface hardness of the material, the maximum hardness was 592 HV<sub>0.2</sub>, and the residual compressive stress on the material surface was 725 MPa. …”