Long-term average spectra: an orchestra, playing forte against a trained operatic soloist
Drawn above with its standard settings, which is almost never how an essay draws it: an essay states the numbers it is arguing about, so the figure a reader meets there is about that argument rather than about the drawing in general. Every option a placement passes is checked against the ones this function actually reads, because an option it does not read is silently ignored and the figure quietly draws what is above instead.
It makes a noise. 8 of its 8 placements carry sound, built from the same numbers as the drawing, offering these buttons: 1000 Hz — threshold 2.4 dB, 250 Hz — threshold 11.4 dB, 3150 Hz — threshold -6.0 dB, 500 Hz — threshold 4.4 dB, A trained operatic soloist, as 11 bands, A voice with no singer's formant, An orchestra, playing forte, as 11 bands, Ordinary speech, as 11 bands and 1 more.
Called by 2 essays
the blast radius of changing it
One voice over ninety players
A soloist heard over a full orchestra is not louder than it and could not be. What the trained voice does instead is put a peak of energy at three kilohertz, which is where the orchestra's spectrum has already fallen away and where the ear's own threshold happens to be lowest. Nineteen decibels of advantage, in a place nobody is competing for.
The partial that gets louder as it goes sharp
Eleven earlier essays sweep a set of partials and hold their amplitudes still, and a real tract does not move with the fundamental. Put the formant account and the sweeping account together and every partial acquires an amplitude modulation at the vibrato rate: 0.07 decibels on the fundamental and 8.6 on the twelfth partial of the same note. They are in phase below a formant and anti-phase above one — not ninety degrees apart — and the whole note swings 0.82 decibels, because they cancel.