2. Using (a) Jacobi Iterative Method and (b) Gauss-Seidel Method, obtain the solution to the 12х, + 3х, — 5х, %3D1 3x, +7x, +13x, = 76 x+5.x, +3.x, = 28 system with .Do four iterations only for each and compute for the relative error on the fourth iteration.

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter2: Systems Of Linear Equations
Section2.2: Direct Methods For Solving Linear Systems
Problem 3BEXP
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2. Using (a) Jacobi Iterative Method and (b)
Gauss-Seidel Method, obtain the solution to the
12.x, +3.x, - 5x, =1
3x, + 7x, +13.x, = 76
x+5.x, +3x, = 28
system
with
[a9, a, , xg] = [1, 0, 1).Do four iterations
only for each and compute for the relative error
on the fourth iteration.
Transcribed Image Text:2. Using (a) Jacobi Iterative Method and (b) Gauss-Seidel Method, obtain the solution to the 12.x, +3.x, - 5x, =1 3x, + 7x, +13.x, = 76 x+5.x, +3x, = 28 system with [a9, a, , xg] = [1, 0, 1).Do four iterations only for each and compute for the relative error on the fourth iteration.
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