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Figure 2 presents a comparison of solution generated with Eq. (4) with those of App.
Computer implementation and a comparison of solution times show that there is more than a four-fold advantage in c.p.u.
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(a) Comparison of approximate solution with the exact solution under boundary condition (mathbf{S_{1}}).
(a) Comparison of approximate solution at different scale levels with the exact solution.
The merit of our present method for KdVB equation is displayed in Section 3, a comparison of numerical solutions with exact solutions is carried out to illustrate the capability of the method for nonlinear dispersive equations.
Table 4 shows a comparison of the solution size and the multicoverage percentages on pathway datasets.
Solutions to the equation of turbulent flow motion and a comparison of the solutions with LDV measured flow pattern of a 75-mm hydrocyclone was successfully performed by Hsieh and Rajamani (1991).
The proposed equation was validated through a comparison of existing solutions and published experimental data.
A comparison of the solutions in terms of harmonic performance is also presented.
A comparison of possible solutions for small scale (0.2 1 MWe) waste-to-energy gasification-based industrial application is presented.
A comparison of the solutions using other MADM methods and present loss function approach methods is provided in Table 9.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com