يعرض 121 - 140 نتائج من 5,191 نتيجة بحث عن '(((( 50 nn decrease ) OR ((( 50 ng decrease ) OR ( 100 nm decrease ))))) OR ( 50 n decrease ))', وقت الاستعلام: 0.85s تنقيح النتائج
  1. 121

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  2. 122

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  3. 123

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  4. 124

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  5. 125

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  6. 126

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  7. 127

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  8. 128

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  9. 129

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  10. 130

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  11. 131

    Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet حسب Soonho Kwon (1402972)

    منشور في 2025
    "…Using a classical RexPoN force-field, we found that the ions in 1000 H<sub>2</sub>O’s spend almost 50% of the time on the surface and 0.5 nm beneath it with a slight preference for OH<sup>–</sup> ion to reside longer on the surface. …"
  12. 132
  13. 133
  14. 134
  15. 135
  16. 136
  17. 137
  18. 138
  19. 139
  20. 140