5 ms·
Ideas about ratios between note frequencies, overtones of different notes co-inciding, and how those overtones affect the cilia in the inner ear and hence our p
by codeulike 6y ago
Ideas about ratios between note frequencies, overtones of different notes co-inciding, and how those overtones affect the cilia in the inner ear and hence our perception of sound could perhaps be called a theory proper. e.g. Octaves are fairly universal in world music, so there might be a physiological basis for that.
- lukeschlather 6y agoOctaves have a very straightforward mathematical basis. Double the pitch, you get an octave. What is pitch? It is defined in hertz, the number of times the underlying vibration repeats per second. If you have an octave, you take one pitch like 220, then you double it to 440. That is the next octave. It's clear that if you define the "underlying vibration" as a sound that oscillates twice (2hz) then the 440hz sound is also in a way a 220hz sound. Thus the octave is really just a recognition of that mathematical relationship between the two pitches.
- jeofken 6y agoThe 5th too is very simple. It is 1.5x the root. So the the 8th of 440Hz is 880Hz, and the 5th is 660Hz. Western musical theory is amazingly fractional
- benrbray 6y agoActually, most music produced on physical instruments in the west doesn't have such nice ratios. I suggest reading about equal temperament (or watching some Adam Neely videos) if you're interested in learning more about how our tuning system diverges from the Pythagorean ideal.
- jeofken 6y agoNot for us string players :)
- codeulike 6y agoI know that. The interesting bit is why does it sound right?. Probably something to do with overtones and cilia.