equilibrium centrifugation - meaning and definition. What is equilibrium centrifugation
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What (who) is equilibrium centrifugation - definition

METHOD OF SEPARATING PARTICLES IN A MIXTURE
Sucrose gradient centrifugation; Ultracentrifugation; Sucrose gradient; Sucrose gradients; Equilibrium gradient centrifugation; Density gradient centrifugation; Sedimentation gradient; Gradient centrifugation; Differential-velocity centrifugation

Equilibrium point         
CONSTANT SOLUTION TO A DIFFERENTIAL EQUATION
Equilibrium points; Equilibrium solution; Point of Equilibrium
In mathematics, specifically in differential equations, an equilibrium point is a constant solution to a differential equation.
Competitive equilibrium         
ECONOMIC EQUILIBRIUM CONCEPT
Walrasian equilibrium; Competitive Equilibrium
Competitive equilibrium (also called: Walrasian equilibrium) is a concept of economic equilibrium introduced by Kenneth Arrow and Gérard Debreu in 1951K. Arrow, ‘An Extension of the Basic Theorems of Classical Welfare Economics’ (1951); G.
Mechanical equilibrium         
  • Diagram of a ball placed in a neutral equilibrium.
  • Diagram of a ball placed in a stable equilibrium.
  • Diagram of a ball placed in an unstable equilibrium.
(IN CLASSICAL MECHANICS) A PARTICLE IS IN MECHANICAL EQUILIBRIUM IF THE NET FORCE ON THAT PARTICLE IS ZERO
Static equilibrium; Point of equilibrium; Neutral balance; Mechanical Equilibrium; Static Equilibrium; Equilibrium (mechanics)
In classical mechanics, a particle is in mechanical equilibrium if the net force on that particle is zero. By extension, a physical system made up of many parts is in mechanical equilibrium if the net force on each of its individual parts is zero.

Wikipedia

Differential centrifugation

In biochemistry and cell biology, differential centrifugation (also known as differential velocity centrifugation) is a common procedure used to separate organelles and other sub-cellular particles based on their sedimentation rate. Although often applied in biological analysis, differential centrifugation is a general technique also suitable for crude purification of non-living suspended particles (e.g. nanoparticles, colloidal particles, viruses). In a typical case where differential centrifugation is used to analyze cell-biological phenomena (e.g. organelle distribution), a tissue sample is first lysed to break the cell membranes and release the organelles and cytosol. The lysate is then subjected to repeated centrifugations, where particles that sediment sufficiently quickly at a given centrifugal force for a given time form a compact "pellet" at the bottom of the centrifugation tube.

After each centrifugation, the supernatant (non-pelleted solution) is removed from the tube and re-centrifuged at an increased centrifugal force and/or time. Differential centrifugation is suitable for crude separations on the basis of sedimentation rate, but more fine grained purifications may be done on the basis of density through equilibrium density-gradient centrifugation. Thus, the differential centrifugation method is the successive pelleting of particles from the previous supernatant, using increasingly higher centrifugation forces. Cellular organelles separated by differential centrifugation maintain a relatively high degree of normal functioning, as long as they are not subject to denaturing conditions during isolation.