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The compressive strain existing at the Ag nanocrystals in Al2O3 matrix is much stronger than that in HfO2 matrix.
The torque measurements indicated that the viscosity ratio between the LCP and PVC matrix is much smaller than unity.
Furthermore, the heat resistance of the blend with a highly crystalline matrix is much better than that of the blend with an amorphous one as expected.
It is proposed that mode II behavior appears when oxygen diffusivity in the matrix is much higher than that in the product oxide layer.
Consequently, the stiffness matrix is statically exact and the mass matrix is much more accurate compared to any other existing FEs.
We estimate the asymptotics of spherical integrals of real symmetric or Hermitian matrices when the rank of one matrix is much smaller than its dimension.
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Properties of composites with the AS13 matrix are much affected by interface adhesion strength.
Moreover, it was observed that the growth mechanism of the metallic matrix was much more modified by the nano-particles than by the micron-sized ones.
Also, the BFRP bars in ECC matrix were much more efficiently utilized than those in concrete, and the failure process is much more ductile due to much higher ultimate compressive strain of ECC materials in the compressive zone.
In contrast, in the composite sintered using Profile #2, the overgrowth of Ni dispersants was reduced, the sintering of the Al2O3 matrix was much more complete, and the density was 10% greater.
As we can see, recovery errors with optimized waveform and sensing matrix are much smaller than the result with Alltop sequence and random sensing matrix.
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