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The remaining part is discretized utilizing standard 3D FE methods.
The fractional derivative is defined in the Caputo sense for time variable which is discretized utilizing a trapezoidal quadrature formula (TQF) and a finite difference method (FDM).
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Sequentially, the functions and components of the pricing models are discretized by utilizing the operational matrix of fractional integration of Legendre wavelets.
In the divergence constraint equation, an artificial compressibility term (time derivative of the pressure with a small parameter) is added and the first order terms are expressed in a divergence form, and are discretized by utilizing the Lax Friedrichs numerical fluxes.
The resulting equation is discretized via the Galerkin method in which the eigenfunctions of a clamped-free Euler Bernoulli beam are utilized.
To prevent that situation, time is discretized.
This path is discretized into multiple segments.
The problem is discretized using finite elements.
However, the VN embedding problem is discretized.
It is discretized by applying the database.
The beam is discretized into 30 elements.
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CEO of Professional Science Editing for Scientists @ prosciediting.com