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Images of crystal morphology indicate that the columnar crystals of TBAB and TBAF are more compact than the hexagonal crystals of TBPB.
This difference in morphology indicate that nearly all 140-nm BN nanoparticles is composed of flake-like H-BN nanoparticles while 70-nm BN nanoparticles is composed of fewer flake-like H-BN and many cubic and spherical BN nanoparticles.
However, recent paleoecological reconstructions based on tooth wear, carbon isotopes, and functional morphology indicate that grasses played a minor role in Late Miocene ecosystems of the eastern Mediterranean, which were more likely dry woodlands or forests.
Its localization on the grain boundaries of the SiO2 (α-cristobalite) bulbs and morphology indicate that this matter is amorphous and has a high adhesion to the silica surface.
Friction coefficient curves obtained from pin-on-disk wear tests, as well as following SEM observation of wear residual trace width and morphology, indicate that TiN and Ti O/TiN films both present high wear resistance in comparison with uncoated Ti 6Al 4V.
Details of its crown morphology indicate that it is a boreosphenidan, a member of the group that includes living marsupials and placentals.
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TEM and SEM morphology indicated that the amorphous MoSx was well-dispersed on the rGO/CNTs and rGO nanocomposites.
In addition, visualization of the lamellar morphology indicates that the PCL crystals are obtained under regime II crystallization conditions.
The cells incubated with PLGA/2 % CNTs nanofibers showed no significant abnormality on the morphology, indicating that the cytotoxicity was associated with the DOX molecule, not the nanocarrier.
However, when acellular AM epithelial scaffold was used, cultured SMG demonstrated organized morphology, indicating that AM epithelial component provided specific surface features for SMG morphogenesis.
The scanning electron microscope (SEM) characterization of the worn surface morphology indicated that the high wear resistance was due to the formation of adherent and strain-hardened tribolayer.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com