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Koh A.L. and Sinclair R. Scanning Electron Microscopy and Surface Enhanced Raman Spectroscopy, Mater.
The topography resulting from these surface modifications was analyzed by scanning electron microscopy and surface profilometry.
Morphology was examined by scanning electron microscopy and surface energy determined using inverse gas chromatography.
Scanning tunnelling microscopy and surface X-ray diffraction are used to determine the structure, which is comprised of an ordered array of hydroxyl molecules with molecular water in the second layer.
Scanning electron microscopy and surface profilometry were also employed to study their wear behaviours.
Using neutron radiography, electron scanning microscopy and surface metrology, the ML-OHP channel structure was characterized and found to possess sintered Ti-6Al-4V powder along its periphery.
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In future studies, the catalytic, magnetic, and photophysical properties of the arrays of nanoparticles will be examined as a function of nanoparticle size using scanning probe microscopies and surface spectroscopies.
Topographic analysis was performed by scanning electron microscopy (SEM) and surface roughness measurement by Atomic Force Microscopy (AFM).
Friction properties were found using lateral force microscopy (LFM), and surface topography was imaged by tapping mode atomic force microscopy (AFM).
Post impact evaluations were carried out using Confocal Laser Scanning Microscopy (CLSM) and surface roughness measurements.
Their morphology and topography have been characterized by scanning electron microscopy (SEM) and surface profilometer.
More suggestions(15)
microscopy and profilometry
microscopy and laser
microscopy and energy
microscopy and X-ray
microscopy and tissue
microscopy and embryo
microscopy and cell
microscopy and imaging
microscopy and image
microscopy and sensing
microscopy and immunofluorescence
microscopy and deconvolution
microscopy and culture
microscopy and cryo-electron
microscopy and immunohistochemistry
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