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We also examined the behavior of the scheme for different values of k.
Finally, we assess the good behavior of the scheme when approximating vanishing phase solutions.
A test model from the literature is used to verify the correct behavior of the scheme.
The asymptotic behavior of the scheme in reconstructing smooth and piecewise smooth functions is demonstrated.
A comparison of the new compact boundary closure with the original explicit boundary closure demonstrates the improved accuracy for the new compact boundary closure, while the behavior of the scheme across discontinuities appears unaffected.
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The effectiveness of the method as well as the asymptotic behavior of the schemes is demonstrated by numerical simulation of Burgers' equation.
We show numerical simulations in the relevant case of gravity in the one-dimensional case demonstrating the overall behavior of the schemes.
In order to inspect the behavior of the schemes more closely, it is necessary to look at the number of samples and estimated P-values at individual settings of true H1. Figure 3a shows underlying and estimated P-values in a collection where 10% of tests come from H1. Figure 3b shows the number of needed samples per test, with tests sorted in the same order as in Figure 3a.
We present a full nonlinear energy-dependent asymptotic analysis of the behavior of this scheme in the thick equilibrium-diffusion limit.
Figure 5 illustrates the behavior of this scheme in the first 200 generations of a test problem.
The scheme is designed to eliminate the nonphysical oscillatory behavior of the Padé scheme across discontinuities and to improve the performance of the ENO scheme in smooth regions.
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behavior of the pattern
behavior of the combination
behavior of the procedure
behavior of the regime
performance of the scheme
attitude of the scheme
behavior of the system
role of the scheme
behavior of the mechanism
behavior of the patterns
behavior of the systems
behavior of the equilibrium
behavior of the plate
behavior of the government
behavior of the trend
behavior of the inequality
behavior of the hitter
behavior of the cancer
behavior of the entity
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com