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Maxwell's equations are solved based on the fast Fourier transform (FFT) method (Birdsall and Langdon 1985).
The DNDPs are solved based on a system optimal relaxation method using Bender's Decomposition.
The fully coupled mechanical and diffusion processes are solved based on a staggered coupling algorithm.
The relevant governing differential equations are solved based on a new differential quadrature method (DQM).
The PDEs are solved based on a 600×100×100 grid over the range of hazard rate.
The high-order shear-deformation governing differential equations are solved based on a new differential quadrature method (DQM).
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The system TVFs can be solved based on (1).
The Poisson equation is solved based on the charge and consequently the new potential is calculated.
The complete multi-objective problem is solved based on NSGA-II.
In this paper, the nonlinear optimization is solved based on Lagrange method.
Step 5 The present problem is solved based on linear, quadratic and cubic loss functions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com