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FTIR analysis was performed to detect the chemical changes of the composite coating under different lubrication conditions.
The spatial distributions of adhesion strength and mortar hydration degree, as well as the length changes of the composite specimen were determined under various curing conditions.
The structural changes of the composite cathode made by mixing spinel LiMn2O4 and layered LiNi1/3Co1/3Mn1/3O2 in 1 1 wt% in both Li-half and Li-ion cells during charge/discharge are studied by in situ XRD.
The morphology changes of the composite powders with different Al2O3 contents were examined by a SE-SEM (Wega/Tescan, TESCAN, a.s., Brno, Czech Republic).
We estimated the contribution of this effect to the changes of the composite refractive index using the equation [43]: Δ n therm = Δ Ε × dn dT c hc ρ d, (3).
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FEM has been able to express the effects of length changes on the composite properties.
Different physicochemical properties like rheological behavior, thermal stability of the protein and morphological changes of the composites were investigated as a function of PVA concentration by viscosity profile, temperature dependant circular dichroic spectroscopic studies, scanning electron microscopy.
The structural body changes of the composites in release medium, with or without additional salts, were also studied using particle sizing systems, nitrogen adsorption and zeta potential measurement in order to investigate the sustained release mechanism of the drugs.
The paper accounts for the cases of axial extension and residual temperature change of the composite medium.
The resistance change of the composite film on exposure to different concentrations of aqueous ammonia shows its utility as a sensor material.
Under 808 nm light irradiation, the incorporated BP sheets with concentration of only 0.08 wt% enable rapid temperature increase over the glass temperature of PU and trigger the shape change of the composite with shape recovery rate of ∼100%.
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