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 Volume - Definition 

For other uses, see Volume (disambiguation).

Volume (also called capacity) is a quantification of how much space an object occupies. The SI unit for volume is the cubic metre (American spelling meter).

The volume of a solid object is a numerical value given to describe the three-dimensional concept of how much space it occupies. One-dimensional objects (such as lines) and two-dimensional objects (such as squares) are assigned zero volume in three-dimensional space.

Capacity and volume can be distinguished; capacity being used for how much a container can hold (with contents measured commonly in litres or its derived units), volume for how much space an object displaces (commonly measured in cubic metres or its derived units).

Volume in acoustics is used as a synonym for loudness. It is a common term for the amplitude or the level of sound. See also: DB(A), Sone, phon, and dynamics (music).

Less commonly, in mathematics, volume can refer to the amount of space an n-dimensional object fills up, for some n > 3. Volumes are defined by means of integral calculus, by the decomposition of complex sets into small volume elements. Volume (Cx3) is the antiderivative of area (Cx2). More simply, for a perfect closed curve, which is the sphere in three dimensions, the volume is the simple integral of the surface area. Thus, the surface area of a sphere is 4πr2, and the volume is (4/3)πr3.

Contents

Volume formulae

Common equations for volume:

A cube:
<math>s^3 = s \cdot s \cdot s<math> (where s is the length of a side)
 
A rectangular prism:
<math>l \cdot w \cdot h<math> (length, width, height)
 
A cylinder:
<math>\pi \cdot r^2 h<math> (r = radius of circular face, h = distance between faces)
 
A sphere:
<math>\frac{4}{3} \pi r^3<math> (r = radius of sphere)
 
An ellipsoid:
<math>\frac{4}{3} \pi abc<math> (a, b, c = semi-axes of ellipsoid)
 
A pyramid:
<math>\frac{1}{3} A h<math> (A = area of base, h = height from base to apex)
 
A cone (circular-based pyramid):
<math>\frac{1}{3} \pi r^2 h<math> (r = radius of circle at base, h = distance from base to tip)
 
Any prism that has a constant cross sectional area along the height**:
<math>A \cdot h<math> (A = area of the base, h = height)
 
Any figure (calculus required):
<math>\int A(h) dh<math> where h is any dimension of the figure, and A(h) is the area of the cross-sections perpendicular to h described as a function of the position along h; this will work for any figure (no matter if the prism is slanted or the cross-sections change shape).

Volume measures: Other SI units

A commonly used SI unit for volume is the litre (American spelling liter), and one thousand litres is the volume of a cubic metre (American spelling meter), which was formerly termed a stere. A cubic centimetre (American spelling centimeter) is the same volume as a millilitre.

Volume measures: USA

U.S. customary units of volume:

  • U.S. fluid ounce, about 29.6 mL
  • U.S. liquid pint = 16 fluid ounces, or about 473 mL
  • U.S. dry pint = 1/64 U.S. bushel, or about 551 mL (used for things such as blueberries)
  • U.S. liquid quart = 32 fluid ounces or two U.S. pints, or about 946 mL
  • U.S. dry quart = 1/32 U.S. bushel, or about 1.101 L
  • U.S. gallon = 128 fluid ounces or four U.S. quarts, about 3.785 L
  • U.S. dry gallon = 1/8 U.S. bushel, or about 4.405 L
  • U.S. (dry level) bushel = 2150.42 cubic inches, or about 35.239 L

The acre foot is often used in measuring the volume of water in a reservoir or an aquifer. It is the volume of water that would cover an area of one acre to a depth of one foot. It is equivalent to 43,560 cubic feet or exactly 1233.481 837 547 52 m³.

Volume measures: UK

Imperial units of volume:

  • UK fluid ounce, about 28.4 mL (this equals the volume of an avoirdupois ounce of water under certain conditions)
  • UK pint = 20 fluid ounces, or about 568 mL
  • UK quart = 40 ounces or two pints, or about 1.137 L
  • UK gallon = 160 ounces or four quarts, or exactly 4.546 09 L

Volume measures: cooking

Traditional cooking measures for volume also include:

  • teaspoon = 1/6 U.S. fluid ounce (about 4.929 mL)
  • teaspoon = 1/6 Imperial fluid ounce (about 4.736 mL) (Canada)
  • teaspoon = 5 mL (metric)
  • tablespoon = 1/2 U.S. fluid ounce or 3 teaspoons (about 14.79 mL)
  • tablespoon = 1/2 Imperial fluid ounce or 3 teaspoons (about 14.21 mL) (Canada)
  • tablespoon = 15 mL or 3 teaspoons (metric)
  • tablespoon = 5 fluidrams (about 17.76 mL) (British)
  • cup = 8 U.S. fluid ounces or 1/2 U.S. liquid pint (about 237 mL)
  • cup = 8 Imperial fluid ounces or 1/2 fluid pint (about 227 mL) (Canada)
  • cup = 250 mL (metric)

Relationship to density

The volume of an object is equal to its mass divided by its average density. This is a rearrangement of the calculation of density as mass per unit volume.

The term specific volume is used for volume divided by mass. This is the reciprocal of the mass density, expressed in units such as cubic metres per kilogram (m³/kg).

Volume comparisons

To help compare different volumes, see Orders of magnitude (volume)

See also

External links



ca:Volum cs:Objem da:Rumfang de:Lautstärke es:Volumen fi:Tilavuus fr:Volume nn:Volum ja:体積 simple:Volume sl:Prostornina sv:Volym

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This article is licensed under the GNU Free Documentation License. It uses material from the Wikipedia article "Volume".