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Chemical Engineering
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Fluid Mechanics
Comments
Question
Which of the following is not concerned with the fluid-particle interaction?
Options
A. Drag co-efficient
B. Froude number
C. Galileo number
D. Weber number
Correct Answer
Weber number
Fluid Mechanics problems
Search Results
1. The terminal velocity of a small sphere settling in a viscous fluid varies as the
Options
A. first power of its dimeter.
B. inverse of the fluid viscosity.
C. inverse square of the diameter.
D. square of the difference in specific weights of solid & fluid.
Show Answer
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Discuss
Correct Answer: inverse of the fluid viscosity.
2. Power loss in an orificemeter is __________ that in a venturimeter.
Options
A. less than
B. same as
C. more than
D. data insufficient, cannot be predicted
Show Answer
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Discuss
Correct Answer: more than
3. The head loss in turbulent flow in a pipe varies
Options
A. as velocity
B. as (velocity)
2
C. inversely as the square of diameter
D. inversely as the velocity
Show Answer
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Discuss
Correct Answer: as (velocity)
2
4. For a particle settling in water at its terminal settling velocity, which of the following is true?
Options
A. Buoyancy = weight + drag
B. Weight = buoyancy + drag
C. Drag = buoyancy + weight
D. Drag = weight
Show Answer
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Discuss
Correct Answer: Weight = buoyancy + drag
5. Pick out the wrong statement.
Options
A. Momentum transfer in laminar flow results from veclocity gradient.
B. A fluid in equilibrium is not free from shear stress.
C. The viscosity of a non-Newtonion fluid is a function of temperature only.
D. both (b) and (c)
Show Answer
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Discuss
Correct Answer: both (b) and (c)
6. For Laminar flow through a packed bed, the pressure drop is proportional to (
V
s
is the superficial liquid velocity and
D
p
is the particle diameter)
Options
A.
V
s
/
D
p
2
B.
V
s
2
/
D
p
2
C.
V
s
2
/
Dp
3
D.
V
s
/
D
p
3
Show Answer
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Discuss
Correct Answer:
V
s
/
D
p
2
7. Shear stress in a fluid flowing in a round pipe
Options
A. varies parabolically across the cross-section.
B. remains constant over the cross-section.
C. is zero at the centre and varies linearly with the radius.
D. is zero at the wall and increases linearly to the centre.
Show Answer
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Correct Answer: is zero at the centre and varies linearly with the radius.
8. Laminar flow of a Newtonion fluid ceases to exist, when the Reynolds number exceeds
Options
A. 4000
B. 2100
C. 1500
D. 3000
Show Answer
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Discuss
Correct Answer: 2100
9. The terminal velocity of a particle moving through a fluid varies as d
p
n
. What is the value of n' for Newton's law regime?
Options
A. 0.5
B. 1
C. 1.5
D. 3
Show Answer
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Discuss
Correct Answer: 0.5
10. The fluid in which the shearing stress within it is proportional to the velocity gradient across the sheared section, is called a __________ fluid.
Options
A. Bingham
B. Newtonion
C. perfect
D. none of these
Show Answer
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Discuss
Correct Answer: Newtonion
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