QUESTION 1 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) +x(t) dx(1) dt +x(t)=0 dx x(0) = 0, =1. dt =0 What is x(t=0.8)? 0.653 ○ 0.726 ○ 0.498 0.547 ○ 0.651 ○ 0.895
QUESTION 1 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) +x(t) dx(1) dt +x(t)=0 dx x(0) = 0, =1. dt =0 What is x(t=0.8)? 0.653 ○ 0.726 ○ 0.498 0.547 ○ 0.651 ○ 0.895
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![QUESTION 1
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)
+x(t)
dx(1)
dt
+x(t)=0
dx
x(0) = 0,
=1.
dt
=0
What is x(t=0.8)?
0.653
○ 0.726
○ 0.498
0.547
○ 0.651
○ 0.895](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fadcd2146-40e8-4924-8383-3d1cdc877b03%2F89a4de62-0544-461b-89ea-2406bef19625%2F9r53s62_processed.png&w=3840&q=75)
Transcribed Image Text:QUESTION 1
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)
+x(t)
dx(1)
dt
+x(t)=0
dx
x(0) = 0,
=1.
dt
=0
What is x(t=0.8)?
0.653
○ 0.726
○ 0.498
0.547
○ 0.651
○ 0.895
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