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The structures and properties of regenerated cellulose, chitin, and a cellulose chitin blend were analyzed with thermogravimetric analysis (TGA) and wide-angle X-ray diffraction (WAXD).
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The blends were analyzed by Fourier transform infra-red spectroscopy (FTIR) and powder X-ray diffraction (PXRD).
The blends were analyzed by several techniques including electron microscopy and separation experiments.
The reactive blends were analyzed amongst others by electron microscopy and fractionation experiments.
To understand the phase behavior of blends, phase stability conditions of binary and ternary blends were analyzed.
SEM images of polyethylene oxide/polystyrene (PEO/PS) blends were analyzed using this image processing method to measure the amount of interfacial area in the samples.
Thus, surfaces of SF dielectric with/without PVA blends were analyzed through AFM, as shown in Fig. 3.
Samples collected from fuel tanks that contained fuel-grade ethanol and accumulated water or ethanol fuel blends were analyzed via both culture-independent molecular techniques (16S rRNA gene pyrosequencing) and cultivation methods to elucidate the types of microbes present in these systems and to provide insight into how these microbes may impact corrosion processes.
Blend morphology evolved by reactive blending was analyzed by light scattering and transmission electron microscopy.
In stage two, the ability to produce the chemicals used as building blocks in the blends is analyzed.
Spherulite growth rate in miscible blends was analyzed by Lauritzen Hoffman equation.
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