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-#N canvas 83 221 878 705 12;
-#X obj 315 424 line~;
-#X obj 47 517 cos~;
-#X graph graph1 0 -2 882 2 644 469 844 339;
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-#X msg 214 64 \; pd dsp 1;
-#X obj 83 194 line~;
-#X obj 22 212 *~;
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-#X text 15 125 audio;
-#X text 93 110 show level;
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-#X text 211 601 <-- graph;
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-#X text 31 2 WINDOWED PACKETS;
-#X text 169 632 <-- output;
-#X text 43 356 freq.;
-#X text 43 337 fundamental;
-#X text 28 51 The simpler technique is to synthesize enveloped sinusoidal
-wave packets. The packets should repeat at the fundamental frequency
-\, but the frequency of the packet itself controls the center frequency
-of the formant. The length of the packet varies inversely with bandwidth.
-;
-#X text 27 132 In the patch below \, the "clip~" followed by "cos~"
-and "+~ 1" is the enveloping ("windowing" function \, which appears
-in the top graph. This is just the original PWM patch from part 2 The
-carrier \, on the other hand \, is a broken sinusoid made by amplifying
-the phasor~ (the "*~" controlled by "center freq.") and taking the
-cos~ of the result. The "breaks" in the sinusoid only occur when the
-enveloping signal is zero.;
-#X text 197 256 center;
-#X text 195 275 freq. (in;
-#X text 194 294 tenths of;
-#X text 193 314 fundamental);
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-#X text 233 487 magnified phase;
-#X text 278 531 desired center frequency;
-#X text 250 514 <--this cosine goes at the;
-#X text 279 550 but its phase is reset each;
-#X text 277 569 fundamental period.;
-#X text 612 666 updated for Pd version 0.34;
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