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Based on this model a unified method is developed to solve the constraint equations.
A powerful analytical method is developed to solve the functionally graded magnetoelectroelastic planar problem.
A new spectral method is developed to solve the unbounded rough surface scattering problem.
A high-order photon Monte Carlo method is developed to solve the radiative transfer equation.
A finite difference method is developed to solve the dimensionless Navier Stokes and energy equations resulting from some assumptions.
A computer code via the shooting method is developed to solve the presented two-point boundary value problem.
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A dynamic programming method and a low-cost greedy method are developed to solve the problem.
A method was developed to solve the combined system of the current field and the circuit.
Some numerical methods are developed to solve the fractional ordinary differential equations.
A numerical method in Fourier-space is developed to solve the polymeric self-consistent field equations.
Many methods have been developed to solve the SFP or MSSFP.
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