Consider a spherical bacterium, with radius 0.95 μm , falling in water at 20° C.    Find the terminal speed of the spherical bacterium in meters per second, ignoring the buoyant force on the bacterium and assuming Stokes' law for the viscous force. You will first need to note that the drag force is equal to the weight at terminal velocity. Take the density of the bacterium to be 1.45 × 103 kg/m3. The viscosity of water at 20 °C is 1.002 × 10-3 kg/m·s and the density is 998 kg/m3.

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
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Chapter12: Fluid Dynamics And Its Biological And Medical Applications
Section: Chapter Questions
Problem 38PE: A spherical particle falling at a terminal speed in a liquid must have the gravitational force...
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Problem 6:   Consider a spherical bacterium, with radius 0.95 μm , falling in water at 20° C.

   Find the terminal speed of the spherical bacterium in meters per second, ignoring the buoyant force on the bacterium and assuming Stokes' law for the viscous force. You will first need to note that the drag force is equal to the weight at terminal velocity. Take the density of the bacterium to be 1.45 × 103 kg/m3. The viscosity of water at 20 °C is 1.002 × 10-3 kg/m·s and the density is 998 kg/m3
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