"A fluid flows a tube of length 0.486 m and diameter 0.0123 m. If the pressure difference is 0.062 atm and the temperature is 25 degrees Celsius, find the volume (in ft3) of the fluid that flows in 16 minutes, assuming laminar flow and viscosity is 0.00112 x 10^(-3) kg/(m-s)." (A 957.99 B 412.18 1341.29 D 277.75 E) 417.62

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Fluid Mechanics
Section: Chapter Questions
Problem 23P: A table-tennis ball has a diameter of 3.80 cm and average density of 0.084 0 g/cm3. What force is...
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"A fluid flows a tube of length 0.486 m and diameter 0.0123 m. If the pressure difference is 0.062 atm and the temperature is 25
degrees Celsius, find the volume (in ft3) of the fluid that flows in 16 minutes, assuming laminar flow and viscosity is 0.00112 x
10^(-3) kg/(m-s)."
(A) 957.99
(B) 412.18
c) 1341.29
D) 277.75
(E
417.62
Transcribed Image Text:"A fluid flows a tube of length 0.486 m and diameter 0.0123 m. If the pressure difference is 0.062 atm and the temperature is 25 degrees Celsius, find the volume (in ft3) of the fluid that flows in 16 minutes, assuming laminar flow and viscosity is 0.00112 x 10^(-3) kg/(m-s)." (A) 957.99 (B) 412.18 c) 1341.29 D) 277.75 (E 417.62
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