Showing 441 - 460 results of 28,002 for search '(( 50 ((mean decrease) OR (nn decrease)) ) OR ( 16 ((w decrease) OR (a decrease)) ))', query time: 0.68s Refine Results
  1. 441
  2. 442
  3. 443
  4. 444
  5. 445
  6. 446
  7. 447
  8. 448
  9. 449
  10. 450
  11. 451
  12. 452

    Fabric Comprised of Cotton Impregnated with Graphene Oxide and Coated with Polystyrene for Personal Moisture and Thermal Management by Shuaijie Yuan (11581814)

    Published 2023
    “…Additionally, the temperature of human skin covered with the G/P-C fabric decreased by approximately 1.6 °C from that of skin covered with cotton. …”
  13. 453

    Fabric Comprised of Cotton Impregnated with Graphene Oxide and Coated with Polystyrene for Personal Moisture and Thermal Management by Shuaijie Yuan (11581814)

    Published 2023
    “…Additionally, the temperature of human skin covered with the G/P-C fabric decreased by approximately 1.6 °C from that of skin covered with cotton. …”
  14. 454
  15. 455
  16. 456

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  17. 457

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  18. 458

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  19. 459

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  20. 460