Showing 461 - 480 results of 20,973 for search '(( 50 ((nn decrease) OR (a decrease)) ) OR ( 100 ((we decrease) OR (mean decrease)) ))', query time: 0.70s Refine Results
  1. 461
  2. 462
  3. 463
  4. 464
  5. 465

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  6. 466
  7. 467

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  8. 468

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  9. 469

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  10. 470

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  11. 471

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  12. 472

    Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation by Changhui Fu (1578262)

    Published 2024
    “…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
  13. 473
  14. 474

    Regenerating axons are increased by ATRA and decreased by clodronate. by Valeria De La Rosa-Reyes (6658613)

    Published 2021
    “…(E) ATRA and clodronate liposome treatment, composite from 2 sections. Scale bar: 100 μm in A and B. (F) Bar and scatter plots of the number of axons per transverse section, sampled at approximately 200 μm distal to the cut site, showing mean ± SEM. …”
  15. 475
  16. 476
  17. 477
  18. 478
  19. 479

    Stability scores with refinement, no USM decreases, no W. by Jedediah M. Singer (10331212)

    Published 2022
    “…<p>Effects of guided and random substitutions within GM designs with a maximum sequence identity to any expert-designed protein of less than 50%, when guided substitutions are not permitted to decrease USM EC<sub>50</sub> predictions and neither guided nor random substitutions are allowed to change amino acids to tryptophan.…”
  20. 480

    Stability scores with refinement, no USM decreases, no AFILMVWY. by Jedediah M. Singer (10331212)

    Published 2022
    “…<p>Effects of guided and random substitutions within GM designs with a maximum sequence identity to any expert-designed protein of less than 50%, when guided substitutions are not permitted to decrease USM EC<sub>50</sub> predictions and neither guided nor random substitutions are allowed to change amino acids to alanine, phenylalanine, isoleucine, leucine, methionine, valine, tryptophan, or tyrosine.…”