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Spherulite growth rate in miscible blends was analyzed by Lauritzen Hoffman equation.
Additionally, the miscibility or immiscibility between polymer blends was analyzed through Han plots.
The influence of interaction between the components and morphology on physical properties of the blends was analyzed.
The crystallization process of poly(ϵ-caprolactone)/oligostyrene (PCL/OS) blends was analyzed by measuring the spin spin relaxation time T2 by pulsed NMR.
The isothermal and non-isothermal crystallization behavior of P VDF/TrFE) in the blends was analyzed in relation to the behavior of the ferroelectric-paraelectric phase transition, often known as the 'Curie transition'.
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Thus, surfaces of SF dielectric with/without PVA blends were analyzed through AFM, as shown in Fig. 3.
The blends were analyzed by Fourier transform infra-red spectroscopy (FTIR) and powder X-ray diffraction (PXRD).
In stage two, the ability to produce the chemicals used as building blocks in the blends is analyzed.
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.
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