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[PDF] Top 20 Degenerate Parametric Integral Equations System for Laplace Equation and Its Effective Solving

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Degenerate Parametric Integral Equations System for Laplace Equation and Its Effective Solving

Degenerate Parametric Integral Equations System for Laplace Equation and Its Effective Solving

... more effective method of solving ...by degenerate kernels to reduce the computing time necessary to solve ...apply degenerate kernels in PIES before usage of collocation ... See full document

6

Solving Fuzzy Integral Equations of the Second
 Kind by Fuzzy Laplace Transform Method

Solving Fuzzy Integral Equations of the Second Kind by Fuzzy Laplace Transform Method

... for solving linear Fredholm fuzzy integral equations of the second kind by using parametric form of fuzzy number and con- verting a linear fuzzy Fredholm integral equation to two ... See full document

9

On Solving a System of Volterra Integral  Equations with Relaxed Monte Carlo Method

On Solving a System of Volterra Integral Equations with Relaxed Monte Carlo Method

... In this paper, a relaxed Monte Carlo numerical method is provided to solve a system of linear Volterra integral equations. The most important advantage of this method is simplicity and easy-to-apply ... See full document

7

A Modified Degenerate Kernel Method for the System of Fredholm Integral Equations of the Second Kind

A Modified Degenerate Kernel Method for the System of Fredholm Integral Equations of the Second Kind

... The degenerate kernel method (DKM) is a well-known classical method for solving Fredholm integral equations of the second kind, and it is one of the easiest numerical methods to define and ... See full document

11

A fourth order accurate difference Dirichlet problem for the approximate solution of Laplace’s equation with integral boundary condition

A fourth order accurate difference Dirichlet problem for the approximate solution of Laplace’s equation with integral boundary condition

... the integral condition on the side of the do- main where nonlocal condition was given: (i) finding an approximate solution by solving the obtained system of equations which are non-band ... See full document

15

Method For Solving Fuzzy Integro-Differential Equation By Using Fuzzy Laplace Transformation

Method For Solving Fuzzy Integro-Differential Equation By Using Fuzzy Laplace Transformation

... [2]. B.Bede,S.G. Gal, Generalizations of the differentiability of fuzzy-number-valued functions with applications to fuzzy differential equations, Fuzzy Sets and Systems 151(2005) 581-599. [3]. H.C. Wu, The ... See full document

5

A NUMERICAL METHOD FOR SOLVING LINEAR INTEGRAL EQUATIONS

A NUMERICAL METHOD FOR SOLVING LINEAR INTEGRAL EQUATIONS

... for solving linear integral ...and effective in treating such ...an effective method for solutions of wide class of problems describing physical system, providing generally a rapidly ... See full document

9

New Integral Transform: Shehu Transform a Generalization of Sumudu and Laplace Transform for Solving Differential Equations

New Integral Transform: Shehu Transform a Generalization of Sumudu and Laplace Transform for Solving Differential Equations

... The Laplace transform is highly efficient for solving some class of ordinary and partial differential equations ...a Laplace transform and the ...the Laplace transform, and the Fourier ... See full document

24

Laplace transform for solving some families of fractional differential equations and its applications

Laplace transform for solving some families of fractional differential equations and its applications

... In the past two decades, the widely investigated subject of fractional calculus has remark- ably gained importance and popularity due to its demonstrated applications in numerous diverse fields of science and ... See full document

9

Numerical Methods for Fredholm Integral Equations of the First Kind

Numerical Methods for Fredholm Integral Equations of the First Kind

... regularized degenerate kernel method for Fredholm integral equations of the first ...for solving Fredholm integral equations of the first kind in Hilbert space setting using ... See full document

6

The Fast Parametric Integral Equations System for Polygonal 2D Potential Problems

The Fast Parametric Integral Equations System for Polygonal 2D Potential Problems

... the parametric integral equations system (PIES) to solve boundary value ...differential equations, such as: Laplace [1], [2], Helmholtz [3] or Navier-Lam´e [4], [5], ...boundary ... See full document

6

Laplace Homotopy Perturbation Method of Solving Nonlinear Partial Differential Equations

Laplace Homotopy Perturbation Method of Solving Nonlinear Partial Differential Equations

... using integral transform in solving nonlinear differential equations may increase the ...differential equations by using diverse ...of Laplace transform and homotopy perturbation ...for ... See full document

6

Modified Kudrayshov Method to Solve Generalized Kuramoto–Sivashinsky Equation

Modified Kudrayshov Method to Solve Generalized Kuramoto–Sivashinsky Equation

... evolution equations (NLEE). The process of solving such NLEE analytically and numerically uses symbolic computation procedures, analytical methods and cardinal functions ...Kuramoto-Sivashinsky ... See full document

12

On the Laplace transform decomposition algorithm for solving nonlinear differential equations

On the Laplace transform decomposition algorithm for solving nonlinear differential equations

... (ADM) and the Laplae transform deomposition algorithm (LTDA) for solving nonlinear.. dierential equations.[r] ... See full document

7

Nystrom method for solving non-uniquely solvable interior Riemann-Hilbert problem on region with corners via integral equation

Nystrom method for solving non-uniquely solvable interior Riemann-Hilbert problem on region with corners via integral equation

... for solving RHC are Nystrӧm method and numerical formulas by Picard Iteration Method has been done in uniquely and non- uniquely solvable integral equation for both interior and exterior RHC by ... See full document

20

Boundary integral equations with the generalized Neumann kernel for laplace's equations in multiply connected regions

Boundary integral equations with the generalized Neumann kernel for laplace's equations in multiply connected regions

... boundary integral equations with the generalized Neumann ...Laplace’s equation D u = 0 in both bounded and unbounded multiply connected regions G in the extended complex plane C :¼ C [ f1g with ... See full document

18

Legendre Wavelet for Solving Linear System of Fredholm And Volterra Integral Equations

Legendre Wavelet for Solving Linear System of Fredholm And Volterra Integral Equations

... In this paper, Legendre wavelets method was aplied for solving system of linear integral equations. The present method reduced the system of integral equations to a ... See full document

9

A new iteration method for solving a class of Hammerstein type integral equations system

A new iteration method for solving a class of Hammerstein type integral equations system

... the system of nonlinear integral equations ...for solving an algebraic linear system of equations Ax = b ...for solving system ... See full document

16

Solving linear integral equations with Fibonacci polynomials

Solving linear integral equations with Fibonacci polynomials

... kind with smooth or weakly singular kernels where the au- thors transform integral equation to linear differential equation [5]. The application of the four Chebyshev polynomials, Leg- endre ... See full document

5

SOLUTION OF CONSTANT COEFFIENTS PARTIAL DERIVATIVE EQUATIONS WITH ELZAKI TRANSFORM METHOD

SOLUTION OF CONSTANT COEFFIENTS PARTIAL DERIVATIVE EQUATIONS WITH ELZAKI TRANSFORM METHOD

... Assist.Prof. Murat DUZ graduated from Department of Mathematics, Kırıkkale University, Kırıkkale, Turkey in 1998. He received his MS degree in Mathematics from Kırıkkale University in 2001 and his PhD from Uludag ... See full document

8

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