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Incompatibility between hydrophilic natural cellulose fibers and hydrophobic thermoplastic polymer matrices leads to poor interfacial bonding in their composites.
The reduction of the stiffness and mass matrices leads to simple analytical recursive relationships depending on the fractal dimension of the structure.
Cultivation of PC12 cells on the scaffolds demonstrated that introduction of MSNPs into PLGA and PLGA/gelatin matrices leads to the improved cell attachment and proliferation as well as long cellular processes.
We emphasize that the addition of nanoparticles with large specific surface area to polymer matrices leads to amplification of a number of rather distinct molecular processes resulting from interactions between chains and solid surfaces.
The calcination of all the microcrystalline matrices leads to the formation of a final monophasic materials with a Ba β-Al2O3 structure and surface areas of 5–15 m2/g.
In RA, the balance of tissue remodeling is disturbed,3 and excessive proteolytic degradation of the joint matrices leads to joint destruction.4,5 The early phase of RA is characterized by the infiltration of immune and inflammatory cells into the synovium and by hyperplasia of the fibroblasts in the synovial lining.
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However, their high capacity in absorbing water, their low dimensional stability, and their incompatibility with most hydrophobic matrices lead to some restrictions of their use.
These exact matrices lead to fewer errors in our computations.
We showed that optimized transmit waveform and sensing matrices lead to smaller mutual coherence between different target responses.
The recent exact analysis of quotient ensemble involving Wishart matrices led to the availability of the corresponding joint probability density function (JPDF) of the eigenvalues [6].
It is also observed on 10×10 instances that some optimized matrices lead to designs with a smaller number of adder-steps but with a larger number of operations with respect to the designs found based on the original matrix.
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