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-rw-r--r--doc/tutorials/cognition/change_perception.pd54
-rw-r--r--doc/tutorials/cognition/cognition_patch_ideas.txt42
-rw-r--r--doc/tutorials/cognition/octaves.pd703
3 files changed, 799 insertions, 0 deletions
diff --git a/doc/tutorials/cognition/change_perception.pd b/doc/tutorials/cognition/change_perception.pd
new file mode 100644
index 00000000..cdb16f1f
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+++ b/doc/tutorials/cognition/change_perception.pd
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+#X text 88 83 this is a steady tone;
+#X text 81 41 steady or vibrato?;
+#X text 66 20 steady or vibrato?;
+#X text 85 219 <-- center pitch;
+#X text 79 168 <-- amount of change;
+#X obj 90 329 metro 200;
+#X obj 278 125 comment 270 14 Times ? 0 0 0 0 Conscious processing
+of sound in the brain is actually quite slow. Yes \, the ear can perceive
+changes on the order of 0.05ms (20 \, 000Hz) \, but your brain is made
+consciously aware of these changes at a much slower rate. You can hear
+an example of this using a oscillating frequency. A slow change in
+the frequency of a tone is perceived as vibrato \, you can consciously
+hear the wavering pitch. As that change in frequency becomes faster
+\, you can no longer consciously hear the wavering pitch. Instead you
+perceive a steady tone.;
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diff --git a/doc/tutorials/cognition/cognition_patch_ideas.txt b/doc/tutorials/cognition/cognition_patch_ideas.txt
new file mode 100644
index 00000000..e947ea23
--- /dev/null
+++ b/doc/tutorials/cognition/cognition_patch_ideas.txt
@@ -0,0 +1,42 @@
+
+Pd patches for demonstrating ideas of the cognitive psychology of music
+
+
+From "Music, Cognition, and Computerized Sound", Perry Cook:
+p31: sine sweeps with bursts of masking white noise
+ music with bursts of masking white noise
+
+p33: "common fate" groups of dots moving through random dots
+ "common fate" using onset time, AM, FM
+
+p34: Chownings female voice/bell demo
+
+
+"Auditory Scene Analysis", by Albert Bregman:
+
+repeating reading person while talking, then adding other sound source (Psych of Music class demo)
+
+
+Found. of Cog. Psych p224-225:
+ Bregman and Ruddnicky(1975): CCCFFCC stream segregation
+ Deutsch (1974): alternating high/low tones in each ear
+pp225-226
+ Bregman: a stream of alternating high/low tones turns into two
+ distinct streams when sped up. Make sure the notes remain distinct with small silences as separation.
+pp234-235
+ masking tones and stream perception
+
+
+
+from class:
+ take two meoldies and layers them in the same pitch range. then
+ move them an octave apart.
+
+
+Interval Classes
+ take melody and scramble the octaves while keeping the pitches the
+ same (after Deutsch)
+
+Deutsch: alternating ear notes form scales
+
+
diff --git a/doc/tutorials/cognition/octaves.pd b/doc/tutorials/cognition/octaves.pd
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