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Journal of Non-Newtonian Fluid Mechanics, Vol.66, No.2-3, 117-125, 1996
Unsteady film flow of power-law liquids on a rotating disk
A boundary-layer-type approximation of the equations of motion for the flow in a film or power-law liquid on a rotating disk is derived. For a given non-steady angular velocity an exact, similarity, solution to the obtained equations is presented. Flow velocity and the evolution of the initially non-uniform thickness of the film are studied for relatively small times after the start of rotation.