<div dir="ltr"><div><div>Hello Clément, thanks for the answer. <br><br></div>But "make it plot how it should" was not the point. I was trying to understand why It don't plot how it should. (I'm not a scientist, just a mechanic). I got myself thinking: if it wasn't a function that I already know, or in a complex block I could think the result is numerically right, when it's not. <br><br></div>Thanks Anyway. <br></div><div class="gmail_extra"><br><div class="gmail_quote">On Mon, Oct 5, 2015 at 5:08 AM, Clément David <span dir="ltr"><<a href="mailto:clement.david@scilab-enterprises.com" target="_blank">clement.david@scilab-enterprises.com</a>></span> wrote:<br><blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">Hello eddie,<br>
<br>
See <a href="http://math2.org/math/integrals/more/restrig.htm" rel="noreferrer" target="_blank">http://math2.org/math/integrals/more/restrig.htm</a><br>
<br>
In fact you can move the starting point by changing the '1/s' initial<br>
value (which is by default 0).<br>
<br>
Regards,<br>
<br>
--<br>
Clément<br>
<div class="HOEnZb"><div class="h5"><br>
Le samedi 03 octobre 2015 à 09:49 -0700, eddie Liberato a écrit :<br>
> Hi,<br>
><br>
> Going straight to the point, I don't understand why Xcos mess with<br>
> the<br>
> amplitude when integrating the sine function. It shouldn't only go<br>
> 90° out<br>
> of phase?<br>
> Someone can point where is my mistake ?<br>
> thanks in advance.<br>
><br>
> <<a href="http://mailinglists.scilab.org/file/n4032956/54.png" rel="noreferrer" target="_blank">http://mailinglists.scilab.org/file/n4032956/54.png</a>><br>
><br>
><br>
><br>
> --<br>
> View this message in context:<br>
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