The problem involves a cylinder falling inside a pipe that is filled with oil as depicted in the figure. The small space between the cylinder and the pipe is lubricated with an oil film that has viscosity m. Derive a formula for the terminal velocity V. of the cylinder with weight W, diameter d, and length L sliding inside a vertical smooth pipe that has inside diameter D. Assume that the cylinder is concentric with the pipe as it falls.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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2) The problem involves a cylinder falling inside a pipe that is filled with oil as depicted in the figure.
The small space between the cylinder and the pipe is lubricated with an oil film that has viscosity
m. Derive a formula for the terminal velocity V. of the cylinder with weight W, diameter d, and
length L sliding inside a vertical smooth pipe that has inside diameter D. Assume that the cylinder
is concentric with the pipe as it falls.
Transcribed Image Text:2) The problem involves a cylinder falling inside a pipe that is filled with oil as depicted in the figure. The small space between the cylinder and the pipe is lubricated with an oil film that has viscosity m. Derive a formula for the terminal velocity V. of the cylinder with weight W, diameter d, and length L sliding inside a vertical smooth pipe that has inside diameter D. Assume that the cylinder is concentric with the pipe as it falls.
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