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-#N canvas 227 120 801 403 12;
-#X graph graph3 0 0 126 50 496 276 796 136;
-#X array spectrum-tab 127 float 1;
-#A 0 42.8571 42.5 43.2143 43.2143 43.2143 43.2143 43.2143 42.8571 42.8571
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-37.5 37.1429 36.0714 35.3571 33.9286 33.2143 32.8571 31.4286 31.0714
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-#X obj 345 112 f;
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-#X text 351 30 mute;
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-#X obj 85 43 r master-lvl;
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-#X obj 203 42 inlet;
-#X text 203 18 level;
-#X obj 203 102 s master-lvl;
-#X msg 98 67 set \$1;
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-#X msg 218 65 \; pd dsp 1;
-#X obj 85 198 line~;
-#X obj 22 216 *~;
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-#X text 20 162 audio;
-#X obj 434 155 t b;
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-#X restore 19 376 pd output;
-#X msg 95 350 MUTE;
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-#X obj 36 53 spectrum-partial 1;
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-#X obj 122 382 loadbang;
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-#X obj 122 433 s poll-table;
-#X text 107 21 This is the bank of oscillators--open one to see:;
-#X text 72 345 And here we send bangs to "poll-table" needed by the
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-#X text 43 18 DRAWABLE SPECTRA;
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-#X msg 39 261 \; spectrum-tab xlabel -5 0 12 24 36 48 60 72 84 96 108
-120;
-#X text 82 60 comment;
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-#X msg 596 65 \; spectrum-tab const 0;
-#X text 555 381 Updated for Pd version 0.34;
-#X text 26 42 In this array \, you can draw a spectral envelope that
-will be synthesized by an oscillator bank. Each oscillator in the bank
-computes its own frequency and uses it to look up amplitude from the
-array.;
-#X text 113 254 <-- the oscillator bank;
-#X text 71 128 <-- pitch;
-#X text 61 185 <-- left or right shift (normally 0);
-#X text 157 318 <-- here we just collect the sum of all the partials
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-#X text 662 44 CLEAR;
-#X text 148 283 <-- make the number labels;
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