يعرض 101 - 120 نتائج من 14,805 نتيجة بحث عن '(( via ((teer decrease) OR (larger decrease)) ) OR ( ((a largest) OR (a large)) decrease ))', وقت الاستعلام: 0.49s تنقيح النتائج
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    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks حسب Yeongjin Kim (10878837)

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  9. 109

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  10. 110

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  11. 111

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  12. 112

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  13. 113

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
  14. 114

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

    منشور في 2022
    "…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …"
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