QUESTION 1 The Reynolds number can be viewed as the ratio of O Drag force/Dynamic force O Buoyancy force/Viscous force O Wall friction force/Viscous force O Inertial force/Gravitational force Inertial force/Viscous force QUESTION 2 The pressure drop for a given flow is determined to be 100 Pa. For the same flow rate, if we reduce the diameter of the pipe by half, the pressure drop will be O 25 Pa O 50 Pa O 200 Pa O 400 Pa O 1600 Pa
QUESTION 1 The Reynolds number can be viewed as the ratio of O Drag force/Dynamic force O Buoyancy force/Viscous force O Wall friction force/Viscous force O Inertial force/Gravitational force Inertial force/Viscous force QUESTION 2 The pressure drop for a given flow is determined to be 100 Pa. For the same flow rate, if we reduce the diameter of the pipe by half, the pressure drop will be O 25 Pa O 50 Pa O 200 Pa O 400 Pa O 1600 Pa
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Can anyone help me with these 4 fluid mechanics multiple choice questions. Thank you

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QUESTION 3
Air at 1 atm and 25°C flows in a 4-cm-diameter glass pipe at a velocity of 7 m/s. The friction factor for this flow is
O 0.0266
O 0.0293
O 0.0313
O 0.0176
O 0.0157
QUESTION 4
Hot combustion gases approximated as air at 1 atm and 350°C flows in a 16-cm-diameter steel pipe at a velocity of 3.5
m/s. The roughness of the pipe is 0.045 mm. The required power input to overcome the pressure drop for a pipe length
60 m is
O 0.55 W
O 1.33 W
O 2.85 W
O 4.82 W
O 6.35 W
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QUESTION 1
The Reynolds number can be viewed as the ratio of
O Drag force/Dynamic force
O Buoyancy force/Viscous force
O Wall friction force/Viscous force
O Inertial force/Gravitational force
O Inertial force/Viscous force
QUESTION 2
The pressure drop for a given flow is determined to be 100 Pa. For the same flow rate, if we reduce the diameter of the
pipe by half, the pressure drop will be
O 25 Pa
O 50 Pa
O 200 Pa
400 Pa
1600 Pa
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