Question 2 (ode45) Solve i – i + x = 0 with , = 1 and v, = 0 for x(t) and sketch the response. a. Firstly, transform the equation of motion into 1st Order Differential Equations. (This part can be handwriting or write it on a Word document). b. Using MATLAB, create a Function then create a Script to find x(t) and v(t) for 0

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Question 2 (ode45)
Solve i – i + x = 0 with x, = 1 and v, - 0 for x(t) and sketch the response.
a. Firstly, transform the equation of motion into 1st Order Differential
Equations. (This part can be handwriting or write it on a Word
document).
b. Using MATLAB, create a Function then create a Script to find x(t) and v(t)
for 0 <t< 10 sec with 0.01 sec increment.
Page 1 of 2
2/2
c. Plot x(t).
d. Plot v(t) using a new figure.
e. Open a new figure, plot both x(t) and v(t). Put the legend of the graph.
f. Using subplot, plot x(t) and v(t). Add a title for each subplot.
Transcribed Image Text:Question 2 (ode45) Solve i – i + x = 0 with x, = 1 and v, - 0 for x(t) and sketch the response. a. Firstly, transform the equation of motion into 1st Order Differential Equations. (This part can be handwriting or write it on a Word document). b. Using MATLAB, create a Function then create a Script to find x(t) and v(t) for 0 <t< 10 sec with 0.01 sec increment. Page 1 of 2 2/2 c. Plot x(t). d. Plot v(t) using a new figure. e. Open a new figure, plot both x(t) and v(t). Put the legend of the graph. f. Using subplot, plot x(t) and v(t). Add a title for each subplot.
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