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The numerical examples show that the higher-order and coupling mass matrices have a significant influence on the frequencies of high mode flexural vibration.
All experiments also clearly showed that the Col-CS matrices have a lower enzyme sensitivity and higher thermal resistance than Col alone.
The surrounding permeable matrices have a strong influence on drawdown but this influence can be neglected when the ratio of the specific storage and the ratio of the hydraulic conductivity of the matrices to those of the fault aquifer are less than 0.001.
We show that the optimal relay amplifying matrices have a beamforming structure.
Like the D k matrices above, the entries of these matrices have a transition matrix interpretation.
In particular, we show that optimal relay matrices have a general beamforming structure.
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They are represented in a descriptor form, where the matrices have an affine dependence on the uncertain parameter.
The resulting matrices had a sharp increase in stiffness, when compared to pure collagen gels.
Using conductance matrices has a number of advantages.
None of the matrices had a p-value below.05.
Pathological alterations in the relationship between cells and the extracellular matrix have a profound effect on tissue morphology and function.
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