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The error between the continuous and discrete solutions is studied.
Such systems with interaction between the continuous and discrete system dynamics are classified as Hybrid Systems.
Sampling theorems provide the bridge between the continuous and the discrete-time worlds.
The fiber formation and uniformity were clearly governed by the viscoelastic interaction between the continuous and dispersed phase.
The formulation accounts for the sub-grid turbulence-spray-chemistry interactions and the coupling between the continuous and dispersed phase.
It was thus to be the infinitesimal, rather than the infinite, that served as the mathematical stepping stone between the continuous and the discrete.
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Table 2 shows the bivariate correlations between the continuous variables, and the means, standard deviations, and Cronbach's alphas for these variables.
Results showed a close agreement between the continuous reading and the reference BG values and a high correlation to plasma readings (r =0.92).
The proportionality assumption and the assumption of a log-linear relationship between the continuous variables and the hazard function were fulfilled, except for serum ferritin.
Linear regression and correlation analysis were used to test for relationships between the continuous variables and MRI data.
However, as we will see below, there are big differences between the continuous case and the discrete case.
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