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As a validation, 2 simulated cases have been analyzed as well.
The conductance data in all the cases have been analyzed by the Shedlovsky equation.
The 30 cases have been analyzed already with HELIOS as single pin cell cases and these results are used for comparison.
Different numerical difficulties have been encountered: model hyperbolicity, non-conservative form of the equations, presence of source terms and degenerate cases have been analyzed.
Two different cases have been analyzed, concerning the mass transfer through the cylindrical body: in the first case, we have imposed a mass flux g ( t ) = 10 t (substance release by the cylinder), while in the second case g ( t ) = − 10 t (substance absorption through the cylinder).
Other α-coiled (5 cases) and 2β-strand interfaces (10 cases) have been analyzed (not shown), and in average, the α-coiled interface regions contain 37±14% amino acids "X" per segment whereas the β-sheet regions contain 66±25% interacting "X" amino acids per segment.
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In addition, the network characteristics for a realistic case have been analyzed.
The economics of interventions in this case have been analyzed for the United States, but future work is needed to analyze the economics of interventions for this case globally.
This work generalizes to all p > 1 a previous result of [1] where a no-weighted and a weighted case have been analyzed for p = 2.
Each case has been analyzed for five different directions of earthquake.
Strong coupling case has been analyzed either with pulsatile coupling [25, 38, 39] or with semianalytical and computational techniques [40 42].
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