Solve the following differential equation in Matlab using ode45.m. Use time interval of 0.1 second. (Don't use options in ode45 to change teh tolerance.) d²x (1) dx (1) dt d1² +x (1) x (0) = 0, dx dt lt=0 What is x(t=0.8)? O 0.653 O 0.726 O 0.498 O 0.547 = 1. +x(1) = 0
Solve the following differential equation in Matlab using ode45.m. Use time interval of 0.1 second. (Don't use options in ode45 to change teh tolerance.) d²x (1) dx (1) dt d1² +x (1) x (0) = 0, dx dt lt=0 What is x(t=0.8)? O 0.653 O 0.726 O 0.498 O 0.547 = 1. +x(1) = 0
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:Solve the following differential equation in Matlab using ode45.m. Use time interval of 0.1 second. (Don't use options in ode45 to change teh tolerance.)
d²x (t)
dx (t)
dt
dt²
+ x (t)
x (0) = 0,
dx
dt
t=0
What is x(t=0.8)?
O 0.653
O 0.726
O 0.498
O 0.547
O 0.651
O 0.895
= 1.
+x (t) = 0
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