Write proper position as and proper velocity as
Substitute this decomposition into the proper-coordinate Euler equations for an inviscid fluid, use , and subtract the homogeneous-background acceleration. With , one obtains the comoving peculiar-velocity equation
The peculiar gravitational potential is the total Newtonian potential with the potential of the exactly homogeneous expanding background subtracted. Its gradient therefore generates only accelerations relative to the Hubble flow.
For a pressureless fluid, linearization discards the quadratic advection term, leaving
In the early Einstein-de Sitter universe, the growing mode has . Integration gives
The linear growth factor obeys
Since after choosing , this is equivalent to
It follows that . Since , one final integration gives the Zel'dovich approximation
where an additive initial displacement has been absorbed into .

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