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authorN.N. <matju@users.sourceforge.net>2010-01-05 22:49:36 +0000
committerN.N. <matju@users.sourceforge.net>2010-01-05 22:49:36 +0000
commit8dbec761cf858ea65900c8a094599857208d8c3a (patch)
tree3228c023f87f23a354da3b57fdc2afe5b7052032 /desiredata/doc/3.audio.examples/J04.corners.pd
parent529e59635598e2d90a7a49f6b4c676f8366109ba (diff)
svn path=/trunk/; revision=12907
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-#X text 410 208 ---- 0.02 seconds ----;
-#X text 354 676 updated for Pd version 0.39;
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-#X text 129 26 -- PHASES (percent) --;
-#X text 140 267 AMPLITUDES (percent);
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-#X text 30 3 Making waveforms with corners using parabolic waves;
-#X text 14 499 Here we combine three parabolic waves (in the same way
-as \, two patches ago \, we combined sawtooth waves). The parabolic
-wave is obtained from the sawtooth wave (assuming it runs from -0.5
-to 0.5) by the formula: y=x*x/2 - 1/12. This is normalized so that
-the corner has a slope change of minus one unit per cycle \, and adjusted
-to remove any DC component.;
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-\, but if the three magnitudes sum algebraicly to zero \, the segments
-will be linear.;
-#X text 371 67 0.25;
-#X text 362 184 -0.25;
-#X text 14 644 Note the reduced scale of the graph (from -0.25 to 0.25)
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