A sphere is dropped under gravity through a fluid of viscosity $\eta$ . If the average acceleration is half of the initial acceleration, the time to attain the terminal velocity is ($\rho$ = density of sphere ; $r$ = radius)
  • A$\frac{{4\rho {r^2}}}{{9\eta }}$
  • B$\frac{{9\rho {r^2}}}{{4\eta }}$
  • C$\frac{{4\rho \,r}}{{9\eta }}$
  • D$\frac{{9\rho \,r}}{{4\eta }}$
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