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I have 2 functions:

f (aa) = 9 sinaa/aa + cosaa  for 0 <= aa <= 6pi.      --- >equation 1.

and f(aa) = cosku

I need to plot the allowed values of aa which will satisfy the equation 1. How do i do this i matlab?

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What did you try ? –  Cedric H. Sep 13 '10 at 8:27
    
i dont know how to do it matlab... –  isha Sep 13 '10 at 8:32
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I guess this is homework and is then related to a course you had about Matlab ... you should at least have a basic idea of what to do... This problem did showed up by itself when you woke up ... –  Cedric H. Sep 13 '10 at 8:34
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3 Answers

up vote 2 down vote accepted

I guess this is homework, and your question is not really clear about k u but here is a short answer.

You can plot f(a) and cos(k u) on the same plot, and then graphically find the solutions of the equation.

Here is a very basic example of code:

a=0:0.01:6*pi;
f = 9*sin(a)./a+cos(a);
plot(a,f)
hold on
u = 0:0.01:6*pi;
f2 = cos(u);
plot(u,f2)
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a=0:0.01:6*pi; can you please elaborate this? what does this line mean? –  isha Sep 13 '10 at 8:36
    
is it the range of a? –  isha Sep 13 '10 at 8:36
    
Run it and test it ... Yes it defines a vector containing the adequate number of elements to allow a span from 0 to 6pi by steps of 0.01. –  Cedric H. Sep 13 '10 at 8:39
    
Don't forget to put hold off at the end. –  yuk Sep 13 '10 at 22:32
    
I m getting the graph but how do i indicate the values of a which will satisfy the equation 1?? –  isha Sep 14 '10 at 5:06
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If you don't know basic MATLAB syntax, you need to start at the beginning. Mathworks has published a beginner's guide for MATLAB, the Getting Started Guide. Read this, and if you have any further questions, come back to SO. You can also use the help or doc functions in MATLAB to gain more understanding about what a built-in function does. For example, doc sin will bring up the documentation page for the sin function.

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Also look at the EZPLOT function. In addition you will also need YLIM to show the whole curve.

To get intersections of two curves you can use Fast and Robust Curve Intersections from FileExchange. For this function you can use data you've got using Cedric's answer.

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