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All the material shows a preferential fabric rather parallel to the previous topography.
The material shows a classical type IV isotherm with an N2hysteresis (Fig. 4a).
The granular material shows a homogeneous texture without any indication of slip localization.
The material shows a high capacity, high rate performance and excellent cycling stability.
The composite material shows a dielectric resonance at about 1 GHz.
However, at T = 1600 °C the material shows a pronounced pseudoductile behaviour.
The as synthesised material shows a unique interconnected porous graphitic structure.
The material shows a significantly higher crack growth rate if the strain rate is decreased.
This type of natural fibers composite material shows a special property, great displacement.
This material shows a melting enthalpy of 192 J g−1 and a melting temperature interval of 24 29 °C.
The material shows a formation of a deformation layer, and the impact wear is small under the impact test.
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