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remove scope~ from docs
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porres committed Jun 14, 2024
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74 changes: 27 additions & 47 deletions documentation/help_files/acosh~-help.pd
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@@ -1,47 +1,27 @@
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#X text 134 540 For input values less than 1 \, the output is zero!;
#X text 215 470 - the hyperbolic arc-cosine of the input;
#X text 215 430 - input to hyperbolic arc-cosine function;
#X text 57 91 Use [acosh~] to output the hyperbolic arc-cosine of each input sample (probably only useful for mathematical calculations).;
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#X text 406 211 see also:;
#X obj 393 239 expr~ acosh($v1);
#X text 58 91 Use [acosh~] to output the hyperbolic arc-cosine of each input sample (probably only useful for mathematical calculations). For input values less than 1 \, the output is zero!, f 62;
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69 changes: 25 additions & 44 deletions documentation/help_files/acos~-help.pd
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#X text 372 249 pi;
#X text 76 94 Use [acos~] to output the arc-cosine of each input sample.;
#X text 74 113 Could also be used for some waveshaping \, like turning a sine wave into a triangular wave.;
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#X obj 337 259 expr~ acos($v1);
#X text 59 94 Use [acos~] to output the arc-cosine of each input sample. Mostly useful just for mathematical reasons. The input is from -1 to 1 and th output is from 0 to pi. For input values outside the -1 to 1 range \, the output is zero!, f 65;
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69 changes: 23 additions & 46 deletions documentation/help_files/asinh~-help.pd
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#X text 79 95 Use [asinh~] to output the hyperbolic arc-sine of each input sample (probably only useful for mathematical calculations).;
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#X obj 328 242 expr~ asinh($v1);
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67 changes: 24 additions & 43 deletions documentation/help_files/asin~-help.pd
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#X text 61 94 Use [asin~] to output the arc-sine of each input sample.;
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#X obj 322 252 expr~ asin($v1);
#X text 61 94 Use [asin~] to output the arc-sine of each input sample. The input is -1 to 1 and the output is from -pi/2 to pi/2. For input values outside the -1 to 1 range \, the output is zero!;
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65 changes: 23 additions & 42 deletions documentation/help_files/atanh~-help.pd
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#X text 54 93 Use [atanh~] to output the hyperbolic arc-tangent of each input sample (probably only useful for mathematical calculations).;
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