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The numerical results have shown good performance of high-resolution finite volume methods in capturing shocks by resolving discontinuities while maintaining accuracy in the smooth regions.
A collection of one- and two-dimensional numerical examples is presented to demonstrate high resolution and robustness of the methods in capturing smooth and non-smooth solutions.
The identified damping results remarkably larger than its analytical estimate and proves highly strain-dependent, raising questions on the reliability of existing analytical methods in capturing the actual dissipation mechanisms.
The high resolution and robustness of the methods in capturing smooth and non-smooth solutions are demonstrated through a collection of one- and two-dimensional scalar and system of examples.
HGDP-eigen performed similarly to the conventional self-eigen methods in capturing PS.
Sensitivity of each of the different methods in capturing early neonatal deaths or perinatal deaths with the cap recap method as the reference group is shown in table 3. Mean age of mothers was 25 years.
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The results demonstrate the ability of the method in capturing quantitatively finite rate effects such as extinction and re-ignition in turbulent flames.
This application demonstrates the power of the CADD method in capturing both long-range dislocation plasticity and short-range atomistic phenomena.
The results of the analyses show that the time history analysis (Av, average; MinEnv, minimum envelope; MaxEnv, maximum envelope of response demands) is the most appropriate method in capturing the behavior of this particular building under dynamic loading.
The effectiveness of the proposed method in capturing defects is illustrated initially by investigating the effective elastic properties of a unidirectional fibre composite based yarn and then a plain woven textile composite.
The direct FE discretization method, the homogenization method and the classical beam theory are examined systematically to reveal, on one hand, the existence of the size effect, and on the other hand, the ability of each method in capturing the size effect upon the static stress distribution and structural deflection.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com