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More realistically, carbon-nanotube composite materials exhibiting improved behaviour over standard carbon-fibre composites are likely in the near term.
FeN materials exhibiting high moment, low coercivity and small magnetostriction have previously been reported.
Biological materials exhibiting non-self-similar hierarchical structures possess desirable mechanical properties.
There has been considerable interest in materials exhibiting negative or zero compressibility.
Engineered cementitious composites (ECC) are materials exhibiting strain-hardening behavior with the formation of multiple cracks.
This could be used to design new multifunctional materials exhibiting both properties.
The passive mode can be applied with materials exhibiting direction-dependent viscosity.
This correlation suggests the presence of a mixture of two materials exhibiting different crystallization degrees.
The most common was the property of diamagnetism, the name given to materials exhibiting a weak repulsion by both poles of a magnet.
A new kinetic model was developed that describes the non-isothermal sinter-crystallisation of materials exhibiting three-stage sintering.
Smart multifunctional materials exhibiting phase transition and tunable optical and/electrical properties provide a new direction towards engineering switchable devices.
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