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Interactive properties of biomaterials can be analyzed using optical imaging, radiography, MRI, or nuclear imaging.
The channel is characterized by roughness features on the inside, which can be analyzed using optical microscopy techniques.
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The consequent surface damage was analyzed using optical and scanning electron microscopy.
The microstructural features were analyzed using optical, scanning and transmission electron microscopy.
Chloroquine was conjugated to thiolated gold nanoparticles by using EDC/NHS chemistry and the binding was analyzed using optical density measurement and Fourier transform infrared spectroscopy.
The spatial distribution of plasma at cathode-surface holes was analyzed using optical emission spectroscopy for further optimization of plasma conditions.
To determine the governing failure mechanisms under different testing conditions, the specimens' failure surfaces were analyzed using optical and electron microscopy.
A representative sample coupon autoclaved with the ATR driver fuel to produce the pre-film coating was analyzed using optical profilometry.
The obtained photocatalysts were analyzed using optical (DRS) as well as morphological and structural (XRD, HR-TEM) methods in order to understand their properties.
Coupons were analyzed using optical microscopy (OM), scanning electron microscopy (SEM) with X-ray energy dispersive spectrometer (EDS) and X-ray diffraction (XRD).
The spatial distribution of plasma at holes on cathode surface was analyzed using optical emission spectroscopy for SiH4/H2 plasma with various pressures with a view to optimizing deposition conditions.
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