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  2. Liquid - Wikipedia

    en.wikipedia.org/wiki/Liquid

    These include the SI unit cubic metre (m 3) and its divisions, in particular the cubic decimeter, more commonly called the litre (1 dm 3 = 1 L = 0.001 m 3), and the cubic centimetre, also called millilitre (1 cm 3 = 1 mL = 0.001 L = 10 −6 m 3). [23] The volume of a quantity of liquid is fixed by its temperature and pressure. Liquids generally ...

  3. Water pouring puzzle - Wikipedia

    en.wikipedia.org/wiki/Water_pouring_puzzle

    The standard puzzle of this kind works with three jugs of capacity 8, 5 and 3 liters. These are initially filled with 8, 0 and 0 liters. In the goal state they should be filled with 4, 4 and 0 liters.

  4. Litre - Wikipedia

    en.wikipedia.org/wiki/Litre

    Some SI units of volume to scale and approximate corresponding mass of water. A litre is a cubic decimetre, which is the volume of a cube 10 centimetres × 10 centimetres × 10 centimetres (1 L ≡ 1 dm 3 ≡ 1000 cm 3). Hence 1 L ≡ 0.001 m 3 ≡ 1000 cm 3; and 1 m 3 (i.e. a cubic metre, which is the SI unit for volume) is exactly 1000 L.

  5. Unit of volume - Wikipedia

    en.wikipedia.org/wiki/Unit_of_volume

    Erntefestmeter (Efm), a unit of volume for trees or forests which assumes a 10% loss due to bark and 10% during the felling process. Vorratsfestmeter (Vfm), a unit of volume for trees or forests based on measurements including the bark. Raummeter (rm), or stere (stacked firewood) = 0.7 m 3 (stacked woodpile with air spaces)

  6. Fluid - Wikipedia

    en.wikipedia.org/wiki/Fluid

    In physics, a fluid is a liquid, gas, or other material that may continuously move and deform (flow) under an applied shear stress, or external force. [1] They have zero shear modulus, or, in simpler terms, are substances which cannot resist any shear force applied to them.

  7. Volume (thermodynamics) - Wikipedia

    en.wikipedia.org/wiki/Volume_(thermodynamics)

    Specific volume is the volume occupied by a unit of mass of a material. [1] In many cases, the specific volume is a useful quantity to determine because, as an intensive property, it can be used to determine the complete state of a system in conjunction with another independent intensive variable .