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These materials can display various phase transitions, as shown in Fig. 10.
Welding of these alloys is however a great challenge because of various phase transitions occurring during solidification.
They increase significantly at the various phase transitions, i.e. crystalline to smectic, smectic to nematic, and liquid crystalline (smectic or nematic) to isotropic.
These PVF2/PBA blends are known to exhibit various phase transitions including liquid liquid phase separation, melting of the PVF2, melting of the PBA, and a single glass transition, in the order of descending temperature.
It is shown that models based on interface-induced modifications to bulk stacking fault energies, and/or coherency-strain energy may not be used to explain the various phase transitions observed.
Pressure dependence of various phase transitions for the miscible block copolymer (BCP) blends was evaluated by depolarized light scattering (DPLS) and small-angle neutron scattering (SANS) measurements, in which the blends consist of a polystyrene-b-poly n-butyl methacrylate) (polystyrene-b-poly n-butyled polystyrene-b-poly n-butyl methacrylate) (dpolystyrene-b-poly n-butyl
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UPPER is a system of thermodynamically sound relationships that relate the various phase-transition properties to one another, which includes transition heats, transition entropies, transition temperatures, molar volume, vapor pressure, solubilities and partition coefficients in different solvents, and so on.
In the future, various photoinduced phase transitions at surfaces or interfaces of transition metal oxides should be explored more systematically using spectroscopic and theoretical approaches.
Various photoinduced phase transitions have been reported in transition metal oxides such as Pr0.55(Ca1 − ySry)0.45MnO3[1] and in diluted magnetic semiconductors including In1 − xMn x As[2].
Common characteristics of industrial emergence have been identified, including key events and milestones, focusing on a chain of demonstrators that delineate the various phases and transitions.
However, their interesting phase properties represent their most significant possible industrial application since they exhibit phase transitions of various textures when heated from the room temperature crystal to the melt.
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