Showing 99,181 - 99,200 results of 132,732 for search '(( a d decrease ) OR ( 5 ((step decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.92s Refine Results
  1. 99181
  2. 99182
  3. 99183
  4. 99184
  5. 99185
  6. 99186

    In Situ Mechanochemical Modulation of Carbon Nanotube Forest Growth by Nicholas T. Dee (6172670)

    Published 2018
    “…We attribute the slower growth kinetics to a stress-dependent increase of 0.02–0.16 eV in the effective activation energy for CNT growth. …”
  7. 99187
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  9. 99189

    In Situ Mechanochemical Modulation of Carbon Nanotube Forest Growth by Nicholas T. Dee (6172670)

    Published 2018
    “…We attribute the slower growth kinetics to a stress-dependent increase of 0.02–0.16 eV in the effective activation energy for CNT growth. …”
  10. 99190

    Image_4_Play to Win: Action Video Game Experience and Attention Driven Perceptual Exploration in Categorization Learning.JPEG by Sabrina Schenk (8837630)

    Published 2020
    “…All stimuli had the same structure but differed with respect to their color combinations and were forming two categories including a prototype, five typical stimuli and one exception. …”
  11. 99191

    Image_2_Play to Win: Action Video Game Experience and Attention Driven Perceptual Exploration in Categorization Learning.JPEG by Sabrina Schenk (8837630)

    Published 2020
    “…All stimuli had the same structure but differed with respect to their color combinations and were forming two categories including a prototype, five typical stimuli and one exception. …”
  12. 99192
  13. 99193
  14. 99194

    In Situ Mechanochemical Modulation of Carbon Nanotube Forest Growth by Nicholas T. Dee (6172670)

    Published 2018
    “…We attribute the slower growth kinetics to a stress-dependent increase of 0.02–0.16 eV in the effective activation energy for CNT growth. …”
  15. 99195

    In Situ Mechanochemical Modulation of Carbon Nanotube Forest Growth by Nicholas T. Dee (6172670)

    Published 2018
    “…We attribute the slower growth kinetics to a stress-dependent increase of 0.02–0.16 eV in the effective activation energy for CNT growth. …”
  16. 99196
  17. 99197
  18. 99198
  19. 99199
  20. 99200

    In Situ Mechanochemical Modulation of Carbon Nanotube Forest Growth by Nicholas T. Dee (6172670)

    Published 2018
    “…We attribute the slower growth kinetics to a stress-dependent increase of 0.02–0.16 eV in the effective activation energy for CNT growth. …”