Showing 1,901 - 1,920 results of 34,801 for search '(( 5 ((point decrease) OR (nn decrease)) ) OR ( 50 ((teer decrease) OR (a decrease)) ))', query time: 0.88s Refine Results
  1. 1901
  2. 1902
  3. 1903
  4. 1904
  5. 1905
  6. 1906
  7. 1907

    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) by Michael T. Robo (1342344)

    Published 2022
    “…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …”
  8. 1908

    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) by Michael T. Robo (1342344)

    Published 2022
    “…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …”
  9. 1909

    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) by Michael T. Robo (1342344)

    Published 2022
    “…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …”
  10. 1910

    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) by Michael T. Robo (1342344)

    Published 2022
    “…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …”
  11. 1911

    Interplay Between Applied Force and Radical Attack in the Mechanochemical Chain Scission of Poly(acrylic acid) by Michael T. Robo (1342344)

    Published 2022
    “…The force needed for bond rupture was estimated to decrease from 4.7 to 2.5 nN. This occurs because hydrogen atom abstraction drastically alters the potential energy surface of the scissile bond. …”
  12. 1912
  13. 1913
  14. 1914
  15. 1915

    Hydroxyl Defects in LiFePO<sub>4</sub> Cathode Material: DFT+<i>U</i> and an Experimental Study by Dmitry A. Aksyonov (4918594)

    Published 2021
    “…The P occupancy decrease is explained by the formation of hydrogarnet-like P/4H and P/5H defects, which have the lowest formation energies among all considered OH defects. …”
  16. 1916
  17. 1917

    Gametocyte numbers can increase (A) or decrease (B, C) even when transmission investment is constant over the time period observed. by Megan A. Greischar (2150737)

    Published 2016
    “…(A) Gametocyte numbers may increase because the parasite population is expanding, even though the percentage of each cohort committed to transmission remains 50%. …”
  18. 1918
  19. 1919
  20. 1920

    Synthesis and Properties of Calcium Tetraorganylalanates with [Me<sub>4−<i>n</i></sub>AlPh<sub><i>n</i></sub>]<sup>−</sup> Anions by Sven Krieck (1446613)

    Published 2008
    “…With an increasing number of methyl groups the melting points decrease from 210 °C for the tetraphenylalanate <b>2</b> to 20 °C for the tetramethylalanate <b>6</b>.…”