Showing 1,501 - 1,520 results of 35,053 for search '(( 5 ((point decrease) OR (nn decrease)) ) OR ( 50 ((we decrease) OR (a decrease)) ))', query time: 0.66s Refine Results
  1. 1501
  2. 1502

    Lowering Melting Points in Asymmetrically Substituted Salen-Copper(II) Complexes Exhibiting Mesomorphic Behavior. Structure of the Mesogen Cu(5-hexyloxySalen) by Reinhard Paschke (553784)

    Published 2002
    “…In comparison with their symmetrical analogues, unsymmetrically substituted Cu−Salen complexes show mesophases with lowered melting points. For terminally substituted complexes, symmetrical ones (R<sup>1</sup> = R<sup>2</sup>) have only an S<sub>A</sub> phase, while for unsymmetrical alkoxy substitution a monotropic S<sub>E</sub> phase occurs and the melting temperature decreases with no loss in mesophase stability. …”
  3. 1503

    Lowering Melting Points in Asymmetrically Substituted Salen-Copper(II) Complexes Exhibiting Mesomorphic Behavior. Structure of the Mesogen Cu(5-hexyloxySalen) by Reinhard Paschke (553784)

    Published 2002
    “…In comparison with their symmetrical analogues, unsymmetrically substituted Cu−Salen complexes show mesophases with lowered melting points. For terminally substituted complexes, symmetrical ones (R<sup>1</sup> = R<sup>2</sup>) have only an S<sub>A</sub> phase, while for unsymmetrical alkoxy substitution a monotropic S<sub>E</sub> phase occurs and the melting temperature decreases with no loss in mesophase stability. …”
  4. 1504
  5. 1505

    2‑Aminobenzoxazole Derivatives as Potent Inhibitors of the Sphingosine-1-Phosphate Transporter Spinster Homolog 2 (Spns2) by Ariel L. Burgio (15069256)

    Published 2023
    “…To develop more potent compounds, we initiated a structure–activity relationship study that identified 2-aminobenzoxazole as a viable scaffold. …”
  6. 1506

    <i>Otx</i> knockdown causes a decrease in <i>dct</i> expression in the developing RPE. by Brandon M. Lane (123574)

    Published 2012
    “…<i>dct</i> expression was reduced only in the ventral most region of the optic cup in single morphants (B–D, white arrows) compared to controls (A). <i>dct</i> expression was significantly decreased in the ventral RPE of <i>otx1a</i>/<i>otx2</i> morphants and to an even greater degree in <i>otx1a</i>/<i>otx1b</i>/<i>otx2</i> morphants (E–F, white arrows). …”
  7. 1507

    Raw database. by Franco Romaní-Romaní (21989788)

    Published 2025
    “…This study aimed to evaluate longitudinal trends in PT scores at a Peruvian medical school.</p><p>Methods</p><p>We conducted a longitudinal analysis using data from PTs administered annually between 2017 and 2024. …”
  8. 1508
  9. 1509

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  10. 1510

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  11. 1511

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  12. 1512

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  13. 1513

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  14. 1514

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  15. 1515

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  16. 1516

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  17. 1517

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  18. 1518

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  19. 1519

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”
  20. 1520

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

    Published 2025
    “…We found that the self-diffusion of water dramatically decreases in droplets with a diameter below 2.2 nm. …”