Showing 161 - 180 results of 14,354 for search '(( via ((((laser decrease) OR (mean decrease))) OR (linear decrease)) ) OR ( a large decrease ))', query time: 4.72s Refine Results
  1. 161
  2. 162

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  3. 163

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  4. 164

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  5. 165

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  6. 166

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  7. 167

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  8. 168

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…The latter turns out to originate from a large fluctuation of the trapped, activated tracers in conjugation with responsive polymer networks.…”
  9. 169
  10. 170
  11. 171
  12. 172
  13. 173
  14. 174
  15. 175
  16. 176
  17. 177
  18. 178
  19. 179
  20. 180