يعرض 161 - 180 نتائج من 24,776 نتيجة بحث عن '(( c large increases ) OR ((( ((a large) OR (via large)) decrease ) OR ( a latent decrease ))))', وقت الاستعلام: 0.31s تنقيح النتائج
  1. 161
  2. 162

    (a) Cement; (b) SHMP; (c) Water glass; (d) PG. حسب Chenhao Li (822769)

    منشور في 2025
    "…<div><p>To solve the disposal of large quantities of construction waste clay, this study proposes a new method for preparing controlled low strength materials (CLSM). …"
  3. 163
  4. 164
  5. 165
  6. 166
  7. 167
  8. 168
  9. 169
  10. 170
  11. 171
  12. 172
  13. 173
  14. 174
  15. 175
  16. 176

    Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder حسب Ali Azadbakht (7484447)

    منشور في 2024
    "…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …"
  17. 177

    Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder حسب Ali Azadbakht (7484447)

    منشور في 2024
    "…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …"
  18. 178

    Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder حسب Ali Azadbakht (7484447)

    منشور في 2024
    "…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …"
  19. 179

    Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder حسب Ali Azadbakht (7484447)

    منشور في 2024
    "…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …"
  20. 180

    Nonadditivity in Many-Body Interactions between Membrane-Deforming Spheres Increases Disorder حسب Ali Azadbakht (7484447)

    منشور في 2024
    "…The confined colloidal particles cause a large deformation of the membrane while not being physicochemically attached to it and interact through it. …"