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In Section 4 the TBVP for a FOCP with time delay is analyzed and it is solved by using BPs.
A system of nonlinear algebraic equations is constructed and it is solved by using the Broyden iterative method [51].
The node selection problem is formulated as a cross-layer optimization problem and it is solved using greedy algorithms.
The Helmholtz equation is used to model acoustic wave propagation and, it is solved using the finite element method.
A new problem is then formulated to cope with the channel transmission error and it is solved.
A mathematical model formulates the feature selection approach and it is solved by binary particle swarm optimization (PSO).
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The optimization problem was formulated as a TSP problem and it was solved implementing the ant colony algorithmic approach.
The objective was minimizing the transportation and fixed costs of using vehicles and it was solved by the Tabu search algorithm.
The problem has been formulated using the nonlocal Eringen elasticity theory and it was solved by a pseudo-spectral collocation method based on Chebyshev polynomials.
The product is far more impressive, the economics are far more aligned with hoteliers' needs, and it's solving a deeper industry problem.
See Fig. 3 for an illustration of this problem and how it is solved in SciLuigi.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com