• No results found

[PDF] Top 20 He’s Homotopy Perturbation Method for solving Linear and Non-Linear Fredholm Integro-Differential Equations

Has 10000 "He’s Homotopy Perturbation Method for solving Linear and Non-Linear Fredholm Integro-Differential Equations" found on our website. Below are the top 20 most common "He’s Homotopy Perturbation Method for solving Linear and Non-Linear Fredholm Integro-Differential Equations".

He’s Homotopy Perturbation Method for solving Linear and Non-Linear Fredholm Integro-Differential Equations

He’s Homotopy Perturbation Method for solving Linear and Non-Linear Fredholm Integro-Differential Equations

... the integro- differential equations through their work in science applications like heat transformer, neutron diffusion, and biological species coexisting together with increasing and decreasing ... See full document

8

Legendre Wavelet and He's Homotopy Perturbation Methods for Linear Fractional Integro Differential Equations

Legendre Wavelet and He's Homotopy Perturbation Methods for Linear Fractional Integro Differential Equations

... for solving linear and nonlinear mathematical, engineering and physical problems, many of the numerical methods are used for seeking approximate solutions such as Collocation method, Taylor expansion ... See full document

7

Combine aboodh transform and homotopy perturbation method for  solving linear and nonlinear schrodinger equations

Combine aboodh transform and homotopy perturbation method for solving linear and nonlinear schrodinger equations

... for solving linear and non-linear Schrödinger equations with initial ...of linear and nonlinear equations. By using this method we obtain a new, efficient recurrent ... See full document

5

Laplace homotopy analysis method for solving linear partial differential equations using a fractional derivative with and without kernel singular

Laplace homotopy analysis method for solving linear partial differential equations using a fractional derivative with and without kernel singular

... Fractional equations have enabled the investigation of the nonlocal response of multiple phenomena such as diffusion processes, electrodynamics, fluid flow, elasticity and many more [–]; fractional derivatives are ... See full document

17

Hybrid method for solving nonlinear Volterra-Fredholm integro differential equations

Hybrid method for solving nonlinear Volterra-Fredholm integro differential equations

... decomposition method (LADM) has been developed to find the ana- lytic approximation solution of the nonlinear Volterra-Fredholm integro differential equations under the initial or ... See full document

17

On The Simulation of Partial Differential Equations Using the Hybrid of Fourier Transform and Homotopy Perturbation Method

On The Simulation of Partial Differential Equations Using the Hybrid of Fourier Transform and Homotopy Perturbation Method

... and homotopy perturbation method is developed for solving the non-homogeneous partial differential equations with variable ...of homotopy perturbation ... See full document

11

Laplace Homotopy Perturbation Method of Solving Nonlinear Partial Differential Equations

Laplace Homotopy Perturbation Method of Solving Nonlinear Partial Differential Equations

... and homotopy perturbation method to solve homogeneous and nonhomogeneous nonlinear partial differential ...This method solves nonlinear partial differential equations ... See full document

6

Equivalence of ( A D M, H P M, A P M ) for Solving Functional Equations

Equivalence of ( A D M, H P M, A P M ) for Solving Functional Equations

... decomposition method, the Homotopy perturbation method, and lyapunov’s method are three powerful methods which consider an approximate solution of linear and ... See full document

5

Mixed of Elzaki Transform and Projected Differential Transform Method for a Nonlinear Wave-Like Equations with Variable Coefficients

Mixed of Elzaki Transform and Projected Differential Transform Method for a Nonlinear Wave-Like Equations with Variable Coefficients

... decomposition method (ADM), ...and S. Gupta worked out by using homotopy perturbation transform method ( HPTM) these types of equation tool [7], furthermore, ...for solving ... See full document

17

Solving the Optimal Control of Linear Systems via Homotopy Perturbation Method

Solving the Optimal Control of Linear Systems via Homotopy Perturbation Method

... for solving linear and non-linear problems have been dominated by the perturbation me- thods, which have found wide applications in engineer- ...other non-linear ... See full document

8

A Method to Estimate the Solution of a Weakly
 Singular Non-linear Integro-differential Equations
 by Applying the Homotopy Methods

A Method to Estimate the Solution of a Weakly Singular Non-linear Integro-differential Equations by Applying the Homotopy Methods

... by integro-differential equations, the numerical solutions of such integro-differential equations have been highly studied by many ...and integro-differential equations, for example ... See full document

11

Optimal Homotopy Asymptotic Method for Solving Integro-differential Equations

Optimal Homotopy Asymptotic Method for Solving Integro-differential Equations

... NTEGRO-DIFFERENTIAL equations arise in modeling various physical and engineering ...problems. Solving such equations is very interesting, and several numerical and analytical methods have been ... See full document

7

Numerical Solution of n th Order Fuzzy Linear Differential Equations by Homotopy Perturbation Method

Numerical Solution of n th Order Fuzzy Linear Differential Equations by Homotopy Perturbation Method

... fuzzy differential equations plays an important role in modeling of science and engineering problems because this theory represents a natural way to model dynamical systems under ...fuzzy ... See full document

6

A numerical technique based on operational matrices for solving nonlinear integro-differential equations

A numerical technique based on operational matrices for solving nonlinear integro-differential equations

... Integro-differential equations frequently appear in all fields of sciences such as physics, chemistry and engineering problems [11, 20, 23, ...fractional differential equations have ... See full document

16

Variational iterative method: an appropriate numerical scheme for solving system of linear Volterra fuzzy integro differential equations

Variational iterative method: an appropriate numerical scheme for solving system of linear Volterra fuzzy integro differential equations

... approximate method has to be ...transforms, homotopy perturbation techniques and others [1, 3, 5, 6, 8, 10, 14, ...a linear Volterra fuzzy integro-differential ...Mura method ... See full document

15

A mathematical modeling and simulation of 
		non linear ordinary differential equations using HPM

A mathematical modeling and simulation of non linear ordinary differential equations using HPM

... the Homotopy Perturbation method (HPM) [14, 15]. Some method of finding numerical solutions is discussed in [16, ...by Non linear system ... See full document

5

A Modified New Homotopy Perturbation Method for Solving Linear Integral Equations – Differential

A Modified New Homotopy Perturbation Method for Solving Linear Integral Equations – Differential

... Integral-differential equations appear in many scientific applications, especially when we convert initial value problems or boundary value problems to integral ...integral-differential ... See full document

6

Modified homotopy perturbation method for solving non-linear oscillator's ‎equations

Modified homotopy perturbation method for solving non-linear oscillator's ‎equations

... with non- linear phenomena and many nonlinear problems. Since solving nonlinear problems plays a crucial role in various fields of engineering and science, Scientists are interested in obtaining ... See full document

7

An improvement to the homotopy perturbation
 method for solving integro-differential equations

An improvement to the homotopy perturbation method for solving integro-differential equations

... solve integro-differential ...the method is designed in such a way that only one term of the series is ...solve integro-differential equations. By this method, we get a truncated series ... See full document

11

Solving linear Volterra–Fredholm integro- differential equations of fractional  order by using  Generalized Differential Transform Method

Solving linear Volterra–Fredholm integro- differential equations of fractional order by using Generalized Differential Transform Method

... in integro -differential equations ...create integro-differential equations ...fractional integro- differential equations ... See full document

12

Show all 10000 documents...