Problem 1: Use the MATLAB dsolve() function to solve the differential equation y" - y = 21²2-1-5 with initial conditions y(1) = 3, y(0) = 0. Plot the your solution on a figure as a single solid curve for time t= -2 to 2. Make sure to label both axes, title your figure, and turn on the plotting legend. Set the y-axis limits to [-15 10].

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Problem 1: Use the MATLAB dsolve() function to solve the differential equation
y" - y = 21²2-1-5 with initial conditions y(1) = 3, y(0) = 0. Plot the your solution
on a figure as a single solid curve for time t = -2 to 2. Make sure to label both axes,
title your figure, and turn on the plotting legend. Set the y-axis limits to [-15 10].
[Insert your MATLAB code and plot here.]
Transcribed Image Text:Problem 1: Use the MATLAB dsolve() function to solve the differential equation y" - y = 21²2-1-5 with initial conditions y(1) = 3, y(0) = 0. Plot the your solution on a figure as a single solid curve for time t = -2 to 2. Make sure to label both axes, title your figure, and turn on the plotting legend. Set the y-axis limits to [-15 10]. [Insert your MATLAB code and plot here.]
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Hello - can you please see the follow up question, and assist me with this, as well? I know it says to do it by hand, but it actually has to be typed. Thank you so much for your assistance. 

Problem 2: Analyze your solution from Problem 1 to check that the initial conditions are satisfied. Compute y(1)
and y (0) and by hand to verify their values. Make sure to show your work.
Transcribed Image Text:Problem 2: Analyze your solution from Problem 1 to check that the initial conditions are satisfied. Compute y(1) and y (0) and by hand to verify their values. Make sure to show your work.
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