Numerical Methods for Fractal-Fractional Differential Equations and Engineering

Numerical Methods for Fractal-Fractional Differential Equations and Engineering

Simulations and Modeling

Khan, Muhammad Altaf; Atangana, Abdon

Taylor & Francis Ltd

11/2024

412

Mole

9781032416892

Pré-lançamento - envio 15 a 20 dias após a sua edição

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1. Basic principle of nonlocalities. 2. Basic of fractional operators. 3. Definitions of fractal-fractional operators with numerical approximations. 4. Error analysis. 5. Existence and uniqueness of fractal fractional differential equations. 6. A numerical solution of fractal-fractional ODE with linear interpolation. 7. Numerical scheme of fractal-fractional ODE with middle point interpolation. 8. Fractal-Fractional Euler method. 9. Application of fractal-fractional operators to a chaotic model. 10. Fractal-fractional Modified Chua chaotic attractor. 11. Application of fractal-fractional operators to study a new chaotic model. 12. Fractal-fractional operators and their application to a chaotic system with sinusoidal component. 13. Application of fractal-fractional operators to four-scroll chaotic system. 14. Application of fractal-fractional operators to a novel chaotic model. 15. A 4D chaotic system under fractal-fractional operators. 16. Self-excited and hidden attractors through fractal-fractional operators. 17. Dynamical analysis of a chaotic model in fractal-fractional operators. 18. A chaotic cancer model in fractal-fractional operators. 19. A multiple chaotic attractor model under fractal-fractional operators. 20. The dynamics of multiple chaotic attractor with fractal-fractional operators. 21. Dynamics of 3D chaotic systems with fractal-fractional operators. 22. The hidden attractors model with fractal-fractional operators. 23. An SIR epidemic model with Fractal-fractional derivative. 24. Application of fractal-fractional operators to COVID-19 infection.
3D Chaotic Systems;Differential and Integral Operators;Deterministic Systems;Dynamical Behavior;Chaotic Model;Fractional Calculus;Power Law Kernel;Fractional Orders Parameters;Ordinary Differential Equations;Fractional Order;Riemann Liouville Sense;Equilibrium Points;Caputo Sense;Generalised Mittag Leffler Function;Caputo Derivative;Lipschitz Conditions;Cauchy Problem;Caputo Type;Exponential Kernel;Chaotic Attractors;Locally Asymptotically Stable;Fractional Derivatives;Chaotic Systems;Chen System;Endemic Equilibria;Asymptotic Stability;Euler Method;Fractional Differential Equations;Dirac Delta Function