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Gas release from the matrix appears to be diffusive that follows Fick's law (Seidle 2011).
Vitrification of the matrix appears to cause nucleation in the droplets at the interface.
The notion of rank of a matrix appears to have been introduced [5], by Sylvester in 1851.
The substance in question appears to be a protease and its interaction with the collagen matrix appears to be a digestion of the latter into fragments shown to be chemotactic.
The presence of TiB particles in the matrix appears to be beneficial with the addition of 0.55 wt.% B to Ti 6Al 4V enhancing the fatigue strength by more than 50%.
With boundaries the spectral radius of the first order derivative matrix appears to be bounded independent of discretization order, and grows only slowly with discretization order for problems in second-order form.
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In the presence of P. gingivalis LPS, the appearance of biglycan in the matrix appeared to be delayed, with protein levels notably reduced at 2 and 5 d, which then appreciably increased at 10 d.
The incorporation into the silica matrix appeared to be durable, as no leaching of protein was detected by ultrafiltration.
Debonding between the MWCNTs and the matrix appeared to occur in the matrix, away from the actual interface.
Within the sandstone core the matrix appeared to be neutrally wetting, with an average θ around 90°.
At 80% drug loading for large sized systems the matrix appeared to offer little resistance to drug release and F approached one.
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