Use Finite-Difference method to approximate the solution of the BVP boundary value problem y" – 3y' + 4y – sin(x)= 0, 0

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Use Finite-Difference method to approximate the solution of the BVP boundary value problem
у" - Зу' + 4у — sin(x) %3D 0, o <x<
4 '
y(0) = 9.8 , y
= 15.9 use h = to approximate.
4
40
TT
QUESTION 5
Use the MATLAB function bvp4c to approximate the solution of the BVP boundary value problem
(x+337.69) y "" + y" + yy'= 337.69 sin(x) ( 337.69 + x + 337.69 cos(x) - 1)
y(0) = 0, y' (0) = 337.69 , y(2T) = 0 , y' (2TT) = 337.69.
use h = 0.01 to approximate.
y(2.46) =
Transcribed Image Text:Use Finite-Difference method to approximate the solution of the BVP boundary value problem у" - Зу' + 4у — sin(x) %3D 0, o <x< 4 ' y(0) = 9.8 , y = 15.9 use h = to approximate. 4 40 TT QUESTION 5 Use the MATLAB function bvp4c to approximate the solution of the BVP boundary value problem (x+337.69) y "" + y" + yy'= 337.69 sin(x) ( 337.69 + x + 337.69 cos(x) - 1) y(0) = 0, y' (0) = 337.69 , y(2T) = 0 , y' (2TT) = 337.69. use h = 0.01 to approximate. y(2.46) =
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