incompressible price - meaning and definition. What is incompressible price
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What (who) is incompressible price - definition

FLUID FLOW IN WHICH DENSITY REMAINS CONSTANT
Incompressible; Incompressible fluid flow; Incompressible Fluid; Incompressible fluid; Numerical methods for incompressible flow

Incompressible flow         
In fluid mechanics or more generally continuum mechanics, incompressible flow (isochoric flow) refers to a flow in which the material density is constant within a fluid parcel—an infinitesimal volume that moves with the flow velocity. An equivalent statement that implies incompressibility is that the divergence of the flow velocity is zero (see the derivation below, which illustrates why these conditions are equivalent).
Incompressible         
·adj Not compressible; incapable of being reduced by force or pressure into a smaller compass or volume; resisting compression; as, many liquids and solids appear to be almost incompressible.
price tag         
  • An orange price tag roll
LABEL DECLARING THE PRICE OF AN ITEM FOR SALE
Price tagging; Pricetags; Price label
also price-tag (price tags)
1.
If something has a price tag of a particular amount, that is the amount that you must pay in order to buy it. (WRITTEN)
The price tag on the 34-room white Regency mansion is ?17.5 million.
N-COUNT
2.
In a shop, the price tag on an article for sale is a small piece of card or paper which is attached to the article and which has the price written on it.
N-COUNT

Wikipedia

Incompressible flow

In fluid mechanics or more generally continuum mechanics, incompressible flow (isochoric flow) refers to a flow in which the material density is constant within a fluid parcel—an infinitesimal volume that moves with the flow velocity. An equivalent statement that implies incompressibility is that the divergence of the flow velocity is zero (see the derivation below, which illustrates why these conditions are equivalent).

Incompressible flow does not imply that the fluid itself is incompressible. It is shown in the derivation below that (under the right conditions) even compressible fluids can – to a good approximation – be modelled as an incompressible flow. Incompressible flow implies that the density remains constant within a parcel of fluid that moves with the flow velocity.