Showing 1,961 - 1,980 results of 106,807 for search '(( a de decrease ) OR ( 5 ((((nn decrease) OR (point decrease))) OR (a decrease)) ))', query time: 1.69s Refine Results
  1. 1961
  2. 1962
  3. 1963
  4. 1964
  5. 1965
  6. 1966
  7. 1967
  8. 1968
  9. 1969
  10. 1970
  11. 1971
  12. 1972
  13. 1973
  14. 1974

    Binding sensogram (a) showing decrease in frequency of crystal immobilised with 1.5 M short aptamer exposed to different concentrations of heparanase. by Suzanne C. Simmons (319222)

    Published 2013
    “…<p>Higher concentrations of heparanase exhibited a greater decrease in frequency. Binding and regeneration sensogram (b) for addition of 800 nM heparanase to a quartz crystal immobilised with 1.5 M short aptamer. …”
  15. 1975
  16. 1976
  17. 1977

    Evolution of Carbon Nanofiber-Supported Pt Nanoparticles of Different Particle Sizes: A Molecular Dynamics Study by Hongye Cheng (1416415)

    Published 2014
    “…Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to analyze the structural evolution of fishbone-type carbon nanofiber-supported Pt nanoparticles, with particle size ranging from 5.6 to 30.7 Å. Simulated results indicate that upon adsorption the distribution of first-shell Pt–Pt coordination number and radial distribution function change significantly in Pt nanoparticles up to 2 nm in size and that the restructuring degree of the Pt nanoparticles decreases with particle size, which is attributed both to the reduced binding energy per Pt atom bonded to support and to the increased cohesive energy of the Pt nanoparticles. …”
  18. 1978

    Evolution of Carbon Nanofiber-Supported Pt Nanoparticles of Different Particle Sizes: A Molecular Dynamics Study by Hongye Cheng (1416415)

    Published 2014
    “…Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to analyze the structural evolution of fishbone-type carbon nanofiber-supported Pt nanoparticles, with particle size ranging from 5.6 to 30.7 Å. Simulated results indicate that upon adsorption the distribution of first-shell Pt–Pt coordination number and radial distribution function change significantly in Pt nanoparticles up to 2 nm in size and that the restructuring degree of the Pt nanoparticles decreases with particle size, which is attributed both to the reduced binding energy per Pt atom bonded to support and to the increased cohesive energy of the Pt nanoparticles. …”
  19. 1979
  20. 1980