Showing 2,381 - 2,400 results of 18,109 for search '(( significant challenge decrease ) OR ( significant ((step decrease) OR (a decrease)) ))', query time: 0.54s Refine Results
  1. 2381

    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
  2. 2382

    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
  3. 2383

    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
  4. 2384

    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
  5. 2385
  6. 2386
  7. 2387
  8. 2388
  9. 2389
  10. 2390
  11. 2391
  12. 2392
  13. 2393
  14. 2394
  15. 2395

    Mean amplitude values during a complete 360° rotation for the external oblique muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
  16. 2396

    Mean amplitude values during a complete 360° rotation for the internal oblique muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
  17. 2397

    Mean amplitude values during a complete 360° rotation for the rectus abdominis muscle. by Christoph Anders (4068499)

    Published 2024
    “…The values for the movement half-phase with decreasing load are mirrored to enable a direct comparison between both movement half-phases. …”
  18. 2398
  19. 2399
  20. 2400