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Size: 12839
Comment: Python 3 for Unreadable code
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← Revision 48 as of 2020-06-05 20:32:41 ⇥
Size: 12926
Comment: negative number in Venn diagram
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| Deletions are marked like this. | Additions are marked like this. |
| Line 17: | Line 17: |
| self.sr = 44100 | self.sr = int(4100) |
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| html('$\cos(\omega t) - \cos(\omega_0 t) = 2 \sin(\\frac{\omega + \omega_0}{2}t) \sin(\\frac{\omega - \omega_0}{2}t)$') | html(r'$\cos(\omega t) - \cos(\omega_0 t) = 2 \sin(\\frac{\omega + \omega_0}{2}t) \sin(\frac{\omega - \omega_0}{2}t)$') |
| Line 35: | Line 35: |
| s2str = ''.join(wave.struct.pack('h',x) for x in s2f) | s2str = b''.join(wave.struct.pack('f',x) for x in s2f) |
| Line 41: | Line 41: |
| html('<embed src="cell://test'+ lab +'.wav" width="200" height="100"></embed>') html('Frequencies: '+ '$\omega_0 = ' + str(hz1) + ' $, $\omega = '+latex(hz2) + '$') |
pretty_print(html(r'<embed src="cell://test'+ lab +'.wav" width="200" height="100"></embed>')) pretty_print(html(r'Frequencies: $\omega_0 = {} $, $\omega = {}$'.format(str(hz1),latex(hz2)))) |
| Line 56: | Line 56: |
| self.sr = 44100 | self.sr = int(44100) |
| Line 90: | Line 90: |
| html("Karplus-Strong algorithm with blending and delay stretching") html("<br>K. Karplus and A. Strong, <em>Digital synthesis of plucked string and drum timbres</em>, \nComputer Music Journal 7 (2) (1983), 43–55.<br>") html("Initial waveform:") |
pretty_print(html("Karplus-Strong algorithm with blending and delay stretching")) pretty_print(html("<br>K. Karplus and A. Strong, <em>Digital synthesis of plucked string and drum timbres</em>, \nComputer Music Journal 7 (2) (1983), 43–55.<br>")) pretty_print(html("Initial waveform:")) |
| Line 94: | Line 94: |
| html("Waveform after stabilization:") | pretty_print(html("Waveform after stabilization:")) |
| Line 96: | Line 96: |
| s2str = ''.join(wave.struct.pack('h',x) for x in s2f) | s2str = b''.join(wave.struct.pack('f',x) for x in s2f) |
| Line 100: | Line 100: |
| html('<embed src="cell://test'+ lab +'.wav" width="200" height="100"></embed>') | pretty_print(html('<embed src="cell://test'+ lab +'.wav" width="200" height="100"></embed>')) |
| Line 122: | Line 122: |
| html('<center>') html("$X \\cap Y$ = {}".format(f(XY))) html("$X \\cap Z$ = {}".format(f(XZ))) html("$Y \\cap Z$ = {}".format(f(YZ))) html("$X \\cap Y \\cap Z$ = {}".format(f(XYZ))) html('</center>') |
pretty_print(html("<center><p>$X \\cap Y$ = {}</p><p> $X \\cap Z$ = {}</p><p> $Y \\cap Z$ = {}</p><p> $X \\cap Y \\cap Z$ = {}<center>".format(f(XY),f(XZ),f(YZ),f(XYZ)))) |
| Line 166: | Line 161: |
| print9(lambda f:f(0,f))( | print((lambda f:f(0,f))( |
| Line 178: | Line 173: |
| html('<h2>Profile the given input</h2>') | pretty_print(html('<h2>Profile the given input</h2>')) |
| Line 268: | Line 263: |
| M[0]=[randint(0,1) for a in range(0,2*N+2)] | M[0]=[randint(0,1) for a in range(2*N+2)] |
| Line 271: | Line 266: |
| for k in range(0,2*N): | for k in range(2*N): |
| Line 341: | Line 336: |
| if XYZ>XY or XYZ>XZ or XYZ>YZ or XY>X or XY>Y or XZ>X or XZ>Z or YZ>Y or YZ>Z or C<0 or XYZ<0 or XZ<0 or YZ<0 or XY<0 or X<0 or Y<0 or Z<0: | if XYZ>XY or XYZ>XZ or XYZ>YZ or XY>X or XY>Y or XZ>X or XZ>Z or YZ>Y or YZ>Z or C<0 or XYZ<0 or XZ<0 or YZ<0 or XY<0 or X<0 or Y<0 or Z<0 or XX<0 or YY<0 or ZZ<0: |
Sage Interactions - Miscellaneous
goto interact main page
Contents
Hearing a trigonometric identity
by Marshall Hampton. When the two frequencies are well separated, we hear the right hand side of the identity. When they start getting close, we hear the higher-pitched factor in the left-hand side modulated by the lower-pitched envelope.
Karplus-Strong algorithm for plucked and percussive sound generation
by Marshall Hampton
An Interactive Venn Diagram
Unreadable code
by Igor Tolkov
Profile a snippet of code
Evaluate a bit of code in a given system
by William Stein (there is no way yet to make the text box big):
Minkowski Sum
by Marshall Hampton
Cellular Automata
by Pablo Angulo, Eviatar Bach
Another Interactive Venn Diagram
by Jane Long (adapted from http://wiki.sagemath.org/interact/misc)
This interact models a problem in which a certain number of people are surveyed to see if they participate in three different activities (running, biking, and swimming). Users can indicate the numbers of people in each category, from 0 to 100. Returns a graphic of a labeled Venn diagram with the number of people in each region. Returns an explanatory error message if user input is inconsistent.
