Showing 5,461 - 5,480 results of 27,187 for search '(( 50 ((mean decrease) OR (a decrease)) ) OR ( 5 ((nn decrease) OR (teer decrease)) ))', query time: 0.66s Refine Results
  1. 5461

    Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre... by Hao Zhang (15339)

    Published 2023
    “…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
  2. 5462

    Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre... by Hao Zhang (15339)

    Published 2023
    “…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
  3. 5463

    Body weight and ovarian characteristics following CR in POLG<sup>D257A/257A</sup> female mice. by Christine Faraci (5778434)

    Published 2018
    “…<p><b>A.</b> Body weight was decreased following the onset of CR. …”
  4. 5464
  5. 5465
  6. 5466
  7. 5467
  8. 5468
  9. 5469
  10. 5470
  11. 5471
  12. 5472

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  13. 5473

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  14. 5474

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  15. 5475

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  16. 5476

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  17. 5477

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  18. 5478

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  19. 5479

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
  20. 5480

    Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub> by Shunda Yang (8086265)

    Published 2022
    “…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”