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Recently, a range of arrested states (glass and gel) of GO dispersion were investigated with various volume fraction and salt concentration by Konkena et al. [50].
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The transformation from the seemingly liquid state (the supercooled liquid) to the seemingly solid state (glass) is gradual, with no evidence of any discontinuities in properties.
Hence, with this solid-state glass electrode exceedingly stable potentiometric signals are obtained.
joule heating technique in the practical temperature range including the melt state, glass transition and glassy state.
These results presumably indicate that, for the crosslinked epoxy glass deformed in the glassy state, glass-like strain recovers quite cooperatively with rubber-like strain at temperatures below Tg, in contrast to independent recovery of these strains in the linear epoxy glass.
Another rule states that Glass is always supposed to be capitalized and "is never plural or possessive".
Then critical states of glass panel in both impulsive region and quasi-static region of the pressure-impulse (P-I) diagram are defined.
The methodology proposed also provides a way of characterizing the evolution of segmental dynamics distribution in out of equilibrium states below glass transition temperatures.
We perform linear oscillatory rheology on composites of polystyrene-grafted silica NPs in two different polystyrene matrices which have similar dispersion states and glass transition temperatures, Tg.
The method is demonstrated for two glass-forming alloys (Cu50Zr50 and Cu64.5Zr35.5), using differential scanning calorimetry (DSC) measurements over a (low) temperature regime including stable, metastable and unstable states (crystalline, glass and undercooled liquid).
We find that the conformational transition, a localized and short time dynamics feature, crosses over different barrier heights when the system transforms from the molten state into the glass state and the barrier height in the glass state is markedly lower than that above Tg.
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