1- Run Matlab Program. 2- Open the Edit window for new file 3- Write the following Matlab code: a=input('Type in the first sequence x{n)='); b=input('Type in the second sequence h(n)='); c=conv(a,b); M=length(c)-1; n=0:1:M; disp('output sequence=');disp(c) stem(n,c); xlabel('Time index n');ylabel('Amplitude'); 4- Save the program in the "bin" directory

Computer Networking: A Top-Down Approach (7th Edition)
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Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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1- Run Matlab Program.
2- Open the Edit window for new file
3- Write the following Matlab code:
a=input('Type in the first sequence x(n)=');
b=input('Type in the second sequence h(n)=');
c=conv(a,b);
M=length(c)-1%;
n=0:1:M;
disp('output sequence=');disp(c)
stem(n,c);
xlabel('Time index n');ylabel('Amplitude');
4- Save the program in the "bin" directory
5- Run the program
6- Take
x(n) = [1,1, –3,2,0, -2] and h(n) = [5,0, –4,0,7]
7- Get the output of the convolution, c.
8- Draw c.
9- Take
x(n) = [1,0, –3] and h(n) = [1,6,1,4,1, -6].
10- Get the output of the convolution, c.
11- Draw c.
12- Compare the lengths of the obtained output at
steps 7 and 10 with their expected theoretical ones.
Transcribed Image Text:1- Run Matlab Program. 2- Open the Edit window for new file 3- Write the following Matlab code: a=input('Type in the first sequence x(n)='); b=input('Type in the second sequence h(n)='); c=conv(a,b); M=length(c)-1%; n=0:1:M; disp('output sequence=');disp(c) stem(n,c); xlabel('Time index n');ylabel('Amplitude'); 4- Save the program in the "bin" directory 5- Run the program 6- Take x(n) = [1,1, –3,2,0, -2] and h(n) = [5,0, –4,0,7] 7- Get the output of the convolution, c. 8- Draw c. 9- Take x(n) = [1,0, –3] and h(n) = [1,6,1,4,1, -6]. 10- Get the output of the convolution, c. 11- Draw c. 12- Compare the lengths of the obtained output at steps 7 and 10 with their expected theoretical ones.
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