(New page: <pre> % Periodic Signal with frequency 1 Hz. t=[0:0.001:40]; y=sin(t); plot(t,y); % Sampling Frequency 0.25 Hz t=[0:4:40]; y2 = sin(t); figure plot(t,y2); </pre>)
 
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plot(t,y2);
 
plot(t,y2);
 
</pre>
 
</pre>
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[[ image:parta.jpg _ECE301Fall2008mboutin]]

Revision as of 16:41, 9 September 2008

% Periodic Signal with frequency 1 Hz.
t=[0:0.001:40];
y=sin(t);
plot(t,y);

% Sampling Frequency 0.25 Hz
t=[0:4:40];
y2 = sin(t);
figure
plot(t,y2);

File:Parta.jpg ECE301Fall2008mboutin

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Abstract algebra continues the conceptual developments of linear algebra, on an even grander scale.

Dr. Paul Garrett