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Pitch (music)

arts Maturity 7-9

Pitch is how we hear sound.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
Some sounds are high. Other sounds are low. This makes music sound good. It helps us hear songs. Do you like high sounds or low sounds?

36 words

Pitch is how we hear sound.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
It lets us know if a sound is high or low.

Some sounds move the air very fast. These sounds have a high pitch. Other sounds move the air slowly. These sounds have a low pitch.

We can put these sounds on a scale. This scale goes from low to high.

Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
Most people agree on the notes.

Some tools make clear notes. A piano makes a clear pitch. A drum might not have a clear pitch. You can still tell if it is high or low.

Musicians use a standard to tune their tools. This helps everyone play together. It makes the music sound right.

119 words

Pitch is how we hear sound. It lets us judge if a sound is high or low.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
This feeling is part of how we hear music. It is different from how loud a sound is. It is also different from the tone or quality of a sound.

Pitch is linked to frequency. Frequency is a way to measure how fast a sound wave vibrates. High pitches come from very fast vibrations. Low pitches come from slow vibrations.

Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
Most people agree on which notes are high or low. We can put these notes on a musical scale.

Some sounds have a definite pitch. This means the pitch is clear and easy to hear. A piano note has a definite pitch. Other sounds have an indefinite pitch. These are harder to name. A snare drum has an indefinite pitch. You can still tell if it is higher than a bass drum.

Musicians use a pitch standard to tune their tools. This helps everyone play together. Since 1939, many use a standard called A440. This means the note A is set to 440 hertz. Hertz is a way to measure the vibrations per second.

199 words

Pitch is a special way we hear sound. It is the quality that lets us judge if a melody is high or low.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
Pitch is one of the main ways we describe musical tones. It works alongside other things like loudness and how long a sound lasts. This feeling is a personal experience for every listener. We use pitch to order sounds on a musical scale. This makes it possible to create the songs we love to hear.

To understand pitch, we must look at how air vibrates. This vibration is called frequency. Frequency is an objective measurement that scientists can track. It tells us how many cycles happen every second, which we call hertz. High pitches happen when sound waves vibrate very quickly. Low pitches happen when the waves move much slower.

Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
Even though pitch is a feeling, it is almost always decided by this speed. The intensity or loudness of the wave does not change the pitch itself.

Scientists have studied how we perceive pitch for a long time. They use different theories to explain how our ears and brains work together. One idea is called place theory. This says our brains know the pitch based on where the sound hits our inner ear. Another idea is temporal theory. This suggests our brains track the timing of the sound vibrations.

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Bach - Taylor 1873 bottom.mid
These studies help us understand how the human auditory system processes the world around us.

Not all sounds have a clear note that you can name. Sounds with a definite pitch have a clear pattern of vibrations. For example, a musical note has a fundamental frequency and many overtones. These overtones are also called partials. Other sounds have an indefinite pitch. A snare drum is a good example of this.

Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
You cannot easily name a specific note for a snare drum. However, you can still tell if it sounds higher than a bass drum.

Musicians need to work together to sound good. They do this by using a pitch standard to tune their instruments. This is a shared reference point for everyone in the group. Since 1939, many people have used a standard called A440. This means the note A is set to 440 hertz.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
Other standards exist for different types of music. For example, baroque pitch uses a lower setting of 415 hertz. Using these standards helps musicians play in harmony.

415 words

Pitch is the auditory quality that allows listeners to judge sounds as "higher" or "lower." It is a major attribute of musical tones, alongside duration, loudness, and timbre. While people often use pitch to order sounds on a musical scale, it is a subjective psychoacoustical attribute. This means pitch is a personal perception rather than a purely objective physical property.

Bach - Taylor 1873.png
Bach - Taylor 1873.png
Historically, studying pitch has been a central problem in psychoacoustics. This field examines how the auditory system represents and processes sound. By understanding pitch, scientists can better understand how humans perceive the world through hearing.

To understand the mechanism of pitch, one must distinguish it from frequency. Frequency is an objective, scientific attribute that can be measured in hertz (Hz). One hertz represents one cycle per second of vibration. Pitch is the subjective perception of these sound waves by an individual. High pitch corresponds to very rapid oscillations of the air. Low pitch corresponds to much slower oscillations.

Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
Although they are different, pitch is almost entirely determined by frequency. The intensity, or amplitude, of a wave does not determine its pitch. However, loudness can cause small shifts in perceived pitch. For example, a 200 Hz tone may seem one semitone lower when it is very loud. Above 2,000 Hz, the pitch may seem higher as loudness increases.

Scientists use different theories to explain how the brain processes pitch. One approach is called place theory. This theory suggests that pitch is determined by the specific location of maximum excitation on the basilar membrane in the ear. This is known as tonotopy. Another approach is temporal theory. This theory suggests that pitch is coded by the timing of action potentials in the auditory nerve. Specifically, it may involve the phase-lock of these electrical signals to the frequency of the sound. Researchers continue to debate how these different biological mechanisms work together to create the experience of pitch.

Musical sounds can be categorized as having either definite or indefinite pitch. A sound with a definite pitch has a clear, identifiable note. This happens because the sound has a harmonic frequency spectrum. Every sound produces many simultaneous vibrations called modes. The lowest frequency is the fundamental frequency. The other frequencies are called overtones or partials. If these overtones are integer multiples of the fundamental, they are called harmonics.

Bach - Taylor 1873 bottom.mid
Bach - Taylor 1873 bottom.mid
Conversely, sounds with indefinite pitch are difficult to identify as specific notes. These sounds often have inharmonicity, meaning their spectra are not harmonic. A snare drum is an example of an indefinite pitch instrument. You cannot easily name its note, but you can still tell it is higher than a bass drum.

There are specific limits to how much pitch a human can perceive. The just-noticeable difference (jnd) is the threshold at which a listener can detect a change in pitch. Below 500 Hz, the jnd for sine waves is about 3 Hz. Above 1,000 Hz, the jnd for sine waves is about 0.6% of the frequency. In the human hearing range, there are approximately 1,400 perceptible pitch steps. This is much larger than the 120 notes found in the standard equal-tempered scale. Some sounds can even create aural illusions. The Shepard scale is a famous example where tones seem to ascend or descend forever.

Because pitch can vary, musicians use a pitch standard to stay in tune. A pitch standard is a conventional reference point for an ensemble. Since 1939, the most common standard has been A440. This means the note A above middle C is set to 440 Hz. However, different eras of music use different standards. Baroque pitch is often set at A=415 Hz. Classical pitch for instruments like the fortepiano might be set at 427 Hz or 430 Hz. Some Romantic era ensembles use 432 Hz or 435 Hz. These standards allow musicians to perform accurately within their specific musical traditions.

Pitch also relates to the concept of transposition in music. Transposing instruments are written in different keys than they actually sound. For example, a clarinet might be written as a C but actually sounds as a B. To avoid confusion, musicians use the term "concert pitch." This refers to the actual sounding pitch of the notes. Understanding these relationships between written notes, physical frequencies, and perceived sounds is essential for both musicians and scientists. It connects the mathematics of physics to the beauty of musical expression.

738 words
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File:Bach - Taylor 1873.png
Bach - Taylor 1873.png
Bach - Taylor 1873 bottom.mid
File:Music frequency diatonic scale-3.svg
Music frequency diatonic scale-3.svg
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