Dad, you told me about sound masking before, right? Today, I was on the train, and while we were above ground, I could hear the announcements clearly, but as soon as we went underground, I couldn't hear them well anymore. I was wondering if that was what you meant by sound masking...
Okay, so today I'll explain masking in a little more detail. It might be a bit difficult, though...
The reason why the train announcements that Oto mentioned became harder to hear when the train went underground is because the noise level inside the train increased, which can also be called a masking phenomenon. This phenomenon is deeply related to the structure of the human ear, and it has two characteristics.
There are sounds of all pitches around us, from high-pitched sirens to deep thuds, but the first characteristic is the masking phenomenon, which is related to the frequency of the sound, or in other words, the pitch of the sound.
If you have a sound at a certain pitch and another sound that's slightly lower, that lower sound makes it harder to hear the higher-pitched sound. When the pitches of the two sounds are further apart, you can hear both sounds again. It also depends on the volume of the two sounds, of course.
What does that have to do with the structure of the human ear?
You probably learned the basics of the ear's structure in science class, but when sound enters the ear canal, it vibrates the eardrum, and the vibration of the eardrum is transmitted to three small bones in the middle ear, and then to a bone called the cochlea, which is shaped like a snail. The cochlea is where the inner ear begins, and its interior is filled with a fluid called lymph, and it is connected to the exit of the cochlea by a membrane called the basilar membrane.