Showing 13,441 - 13,460 results of 13,723 for search '(( a ((teer decrease) OR (linear decrease)) ) OR ( a ((largest decrease) OR (greatest decrease)) ))', query time: 0.53s Refine Results
  1. 13441

    Image1_To investigate the correlation between normal fetal biventricular myocardial function and gestational age using velocity vector imaging.jpeg by Min Hou (500737)

    Published 2023
    “…</p>Conclusion<p>In normal fetuses, the peak myocardial velocity of the biventricular segments showed a decreasing trend from the basal to the apical segment. …”
  2. 13442

    Centrosome growth by localised assembly and distributed disassembly. by Deb Sankar Banerjee (12890259)

    Published 2022
    “…<p>(A) Localized assembly around the centriole and disassembly throughout the pericentriolic matter generate a size-dependent disassembly rate which ensures robust size control. …”
  3. 13443

    PLANT DENSITY AND NITROGEN FERTILIZATION ON COMMON BEAN NUTRITION AND YIELD by ROGÉRIO PERES SORATTO (6117422)

    Published 2018
    “…In the absence of N fertilization, reduction of plant density decreased N concentration in common bean leaves. Nitrogen fertilization linearly increased dry matter and leaf N concentration, mainly at lower plant densities. …”
  4. 13444

    Data_Sheet_1_Differences in nitrogen and phosphorus sinks between the harvest and non-harvest of Miscanthus lutarioriparius in the Dongting Lake wetlands.PDF by Zenghui Peng (2118727)

    Published 2022
    “…Similarly, except for the relative release index of nitrogen in the leaves, all the relative release indices decreased in the flood period. At the end of the in situ decomposition experiment, the relative release indices of both the nitrogen and phosphors were greater than zero, indicating that there was a net release of nitrogen and phosphorus. …”
  5. 13445

    Milk production and economic assessment of cassava bagasse in the feed of dairy cows by Leandro Pereira Lima (5885036)

    Published 2022
    “…Diet with 15% cassava bagasse provided a 13.2% increase in production when compared to control. …”
  6. 13446

    Numerical Simulation on the Radar Cross Section of Variable-Sweep Wing Aircraft by Shichun Chen (6137399)

    Published 2018
    “…The results of mathematical statistics and comparative analysis show that: (i) the RCS peak value in the head direction of the aircraft decreases non-linearly with the sweep angle of the wing's leading edge; (ii) the azimuth angle corresponding to one of the peak values of the aircraft's RCS is equal to the leading edge's sweep angle; (iii) when the leading edge's sweep angle is 33º, the arithmetic average value of the RCS values in the head direction of the aircraft is 0.644% of the average value when the sweep angle is 0º; (iv) the larger the sweep angle is, the lower the probability that the aircraft is detected.…”
  7. 13447

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  8. 13448

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  9. 13449

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  10. 13450

    Two-Dimensional Growth Rate Control of l‑Phenylalanine Crystal by Laser Trapping in Unsaturated Aqueous Solution by Ken-ichi Yuyama (1268838)

    Published 2016
    “…As the critical phenomenon underlying the crystal growth, we propose that a dense domain consisting of a large number of the liquid-like clusters is formed prior to the crystallization. …”
  11. 13451

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  12. 13452

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  13. 13453

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  14. 13454

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  15. 13455

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  16. 13456

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  17. 13457

    Two-Dimensional Growth Rate Control of l‑Phenylalanine Crystal by Laser Trapping in Unsaturated Aqueous Solution by Ken-ichi Yuyama (1268838)

    Published 2016
    “…As the critical phenomenon underlying the crystal growth, we propose that a dense domain consisting of a large number of the liquid-like clusters is formed prior to the crystallization. …”
  18. 13458

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  19. 13459

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”
  20. 13460

    Crystallization of Active Emulsion by Boris Kichatov (9609078)

    Published 2021
    “…Crystallization proceeds via condensation of droplets from the gas phase through the formation of liquid as an intermediate phase, which covers the crystal surface with a thin layer. Inside the liquid layer the bond-orientational order of droplets decreases from the crystal surface toward the gas phase. …”