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The self-assembly of the PDA coated graphene nanosheets was conducted at different reaction concentrations and times, and monitored by atomic force microscopy images.
The surface topography was monitored by atomic force microscopy and the magnetic properties of the near-surface region were monitored using magneto optical Kerr effect.
AgNPs concentration was determined as the difference between the total and dissolved Ag concentrations measured by inductively coupled plasma-mass spectroscopy (ICP-MS); extinction spectra of PVP-AgNPs were monitored by UV vis; and size evolution was monitored by atomic force microscopy (AFM) over a period of 96 h.
The surface free energy of paint and CRS were calculated by the contact angle measurement using sessile drop method, the surface characteristic such as surface morphology of CRS was monitored by atomic force microscopy (AFM) and the surface composition of CRS was characterized by using Electron Spectroscopy for Chemical Analysis ESCAA).
The effects of 25-OH and Dex on the shape of oligodendrocytes were monitored by atomic force microscopy (AFM), a technique that provides topographic images as well as morphological parameters (height, surface, volume) of individual attached living cells [26], [27].
Surface patterning process was monitored by atomic force microscopy, showing differences in surface roughness caused by different molecules being attached to the surface.
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A new experimental setup designed to monitor by atomic force microscopy (AFM) the time evolution of a single micrometer-sized polymer spherulite during crystallization at elevated temperatures is presented.
The sites now being monitored by the atomic energy agency include former missile factories, warehouses, industrial plants and sites believed to contain "dual use" equipment like high-precision machine tools that could be used either for civilian purposes or for making components for nuclear and other weaponry.
The acid extract was preconcentrated on-line on a minicolumn packed with a chelating resin (Serdolit Che, with iminodiacetic groups) and nickel was eluted with diluted hydrochloric acid, being continuously monitored by flame atomic absorption spectrometry.
Existence of fibrils as well as fibrillar morphologies can be monitored by using atomic force microscopy (AFM) or transmission electron microscopy (TEM).
It is then monitored by the spectroscopic atomic emission marker transition at λ = 791.1 nm {Ba[6s6p 3P1 → Ba[6s2(1S0)]} where Ba 3P1) results from collisional activation of Ba 3DJ).
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