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== Explanation ==
== Explanation ==
JOSHUA LEE BREAZEALE, I repeat, JOSHUA LEE BREAZEALE, AGE 14 GOES TO ALEXANDRIA COUNTRY DAY SCHOOL, IS THE FATTEST PERSON IN THE WORLD.TIMOTHY MATHEWS IS SO FAT WHEN HE SAT ON THE SUN IT BAECAME NIGHT. The perception of loudness is related to both the sound pressure level and duration of a sound. It appears that the human auditory system integrates the level over a 600-1000 ms window. For example, a sound of constant sound pressure level (SPL) will be perceived to grow in loudness as 20, 50, 100, 200 ms samples are played up to a maximum of ~1000 ms where the perception of loudness will stabilize. For long duration sounds then, the moment by moment perception of loudness will be based on the integration (or averaging) of the last 600-1000 ms.
Mr. White is the dumbest ass hole in the whole world and he is just hating on us b/c he is so fat he cant get out of bed JOSHUA LEE BREAZEALE, I repeat, JOSHUA LEE BREAZEALE, AGE 14 GOES TO ALEXANDRIA COUNTRY DAY SCHOOL, IS THE FATTEST PERSON IN THE WORLD.TIMOTHY MATHEWS IS SO FAT WHEN HE SAT ON THE SUN IT BAECAME NIGHT. The perception of loudness is related to both the sound pressure level and duration of a sound. It appears that the human auditory system integrates the level over a 600-1000 ms window. For example, a sound of constant sound pressure level (SPL) will be perceived to grow in loudness as 20, 50, 100, 200 ms samples are played up to a maximum of ~1000 ms where the perception of loudness will stabilize. For long duration sounds then, the moment by moment perception of loudness will be based on the integration (or averaging) of the last 600-1000 ms.


For long duration sounds loudness is often approximated by a power function with an exponent of 0.6 when plotted vs. sound pressure or 0.3 when plotted vs. sound intensity ([[Stevens' power law]]). More precise measures have been subsequently made that show that loudness grows more rapidly (with a higher exponent) at low and high levels and less rapidly (with a lower exponent) at moderate levels.
For long duration sounds loudness is often approximated by a power function with an exponent of 0.6 when plotted vs. sound pressure or 0.3 when plotted vs. sound intensity ([[Stevens' power law]]). More precise measures have been subsequently made that show that loudness grows more rapidly (with a higher exponent) at low and high levels and less rapidly (with a lower exponent) at moderate levels.

Revision as of 17:12, 14 November 2008

Loudness is the quality of a sound that is the primary psychological correlate of physical strength (amplitude).

The horizontal axis shows frequency in Hz

Loudness, a subjective measure, is often confused with objective measures of sound pressure such as decibels or sound intensity. Filters such as A-weighting attempt to adjust sound measurements to correspond to loudness as perceived by the average human. However, true perceived loudness varies from person to person and cannot be measured this way.

Loudness is also affected by parameters other than sound pressure, including: frequency (see bandwidth), and duration (see temporal integration).

Explanation

Mr. White is the dumbest ass hole in the whole world and he is just hating on us b/c he is so fat he cant get out of bed JOSHUA LEE BREAZEALE, I repeat, JOSHUA LEE BREAZEALE, AGE 14 GOES TO ALEXANDRIA COUNTRY DAY SCHOOL, IS THE FATTEST PERSON IN THE WORLD.TIMOTHY MATHEWS IS SO FAT WHEN HE SAT ON THE SUN IT BAECAME NIGHT. The perception of loudness is related to both the sound pressure level and duration of a sound. It appears that the human auditory system integrates the level over a 600-1000 ms window. For example, a sound of constant sound pressure level (SPL) will be perceived to grow in loudness as 20, 50, 100, 200 ms samples are played up to a maximum of ~1000 ms where the perception of loudness will stabilize. For long duration sounds then, the moment by moment perception of loudness will be based on the integration (or averaging) of the last 600-1000 ms.

For long duration sounds loudness is often approximated by a power function with an exponent of 0.6 when plotted vs. sound pressure or 0.3 when plotted vs. sound intensity (Stevens' power law). More precise measures have been subsequently made that show that loudness grows more rapidly (with a higher exponent) at low and high levels and less rapidly (with a lower exponent) at moderate levels. Units used to measure loudness:

  • Sone (loudness N)
  • Phon (loudness level L)

Loudness and hearing loss

When sensorineural hearing loss (damage to the cochlea or in the brain) is present, the perception of loudness is altered. Sounds at low levels (often perceived by those without hearing loss as relatively quiet) are no longer audible to the hearing impaired, but interestingly, sounds at high levels often are perceived as having the same loudness as they would for an unimpaired listener. This phenomenon can be explained by two theories: Loudness grows more rapidly for these listeners than normal listeners with changes in level. This theory is called "loudness recruitment" and has been accepted as the classical explanation. More recently, it has been proposed that some listeners with sensorineural hearing loss may in fact exhibit a normal rate of loudness growth, but instead have an elevated loudness at their threshold. That is, the softest sound that is audible to these listeners is louder than the softest sound audible to normal listeners. This theory is called "Softness Imperception."

Other uses of the word loudness

The "loudness" control on a consumer stereo alters the frequency response curve to correspond roughly with the equal loudness characteristic of the ear.[1] The loudness control is intended to make the recorded music sound more natural when played at a a lower sound pressure level.

References

  1. ^ Lenk, John D. Circuit Troubleshooting Handbook. McGraw-Hill Professional (1998). ISBN 0070381852