So, people with perfect pitch can tell the speed of something that is approaching them while making a sound and then passing by, right?
I have another interesting story to tell. Did you know that there are animals that use the Doppler effect of ultrasound to catch their prey?
Judging by sound means they can't see? ...A bat?
That's correct. Bats have amazing hearing. They use pulsed ultrasonic waves at around 60 kHz to target insects and other prey, and then observe their distance and speed.
These are short-duration waves. In the case of bats, they use sounds that last for a few tens of milliseconds, or about 0.03 seconds. When they approach an insect, they shorten the duration of these pulses and generate a series of pulses.
But how can we determine distance and speed by applying pulses?
By capturing the waves that reflect off the target when ultrasound hits it, we can determine the distance to the target, its velocity and direction, its size, and even the properties of its surface.
I see, you calculate the distance to the target using the time it takes for the reflected wave to return, and then calculate the velocity using the Doppler effect of the reflected wave. The Doppler effect is interesting.
That's right. While it's fascinating from a natural science perspective, phenomena like the ones we just discussed are also widely applied in industry.