• Tidak ada hasil yang ditemukan

Complexity Reduction Approach for Solving Second Kind of Fredholm Integral Equations

N/A
N/A
Protected

Academic year: 2024

Membagikan "Complexity Reduction Approach for Solving Second Kind of Fredholm Integral Equations"

Copied!
1
0
0

Teks penuh

(1)

Complexity Reduction Approach for Solving Second Kind of Fredholm Integral Equations

ABSTRACT

Initially, the concept of the complexity reduction approach was applied to solve symmetry algebraic systems that were generated from the discretization of the partial differential equations. Consequently, in this paper, the effectiveness of a complexity reduction approach based on half- and quarter-sweep iteration concepts for solving linear Fredholm integral equations of the second kind is investigated. Half- and quarter-sweep iterative methods are applied to solve dense linear systems generated from the discretization of the second kind of linear Fredholm integral equations using a repeated modified trapezoidal (RMT) scheme. The formulation and implementation of the proposed methods are presented.

In addition, computational complexity analysis and numerical results of test examples are also included to verify the performance of the proposed methods.

Referensi

Dokumen terkait

This research paper aims to analyze (1) the difference effect between Polya problem solving approach through Group Investigation strategy and conventional learning approach to

Based on explanation above, the objectives to be achieved from this study to analyze (1) differences effect between Polya problem solving approach through Group

We obtain that parallel programming with CUDA can be used to improve execution time of computation to solve the one-dimensional elasticity equations within an appropriate array

In this work, we prove the existence of solutions for a tripled system of integral equations using some new results of fixed point theory associated with measure of noncompactness..

Key words: method of integral equations, Fourier transform, apparent resistivity, electrical monitoring of dams and barriers, electrical tomography, resistivity method.. Introduction

The purpose of this paper is to create a method for solving the problem of the variation calculus for processes described by ordinary differential equations with phase and integral

The recent study in [16] has shown the application of Newton’s method with PKSOR iterative method also called as NPKSOR method to be effective in solving nonlinear Fred- holm integral