During fluid flow, variation of shear stress(τ) with velocity gradientat constant pressure temperature is shown below in the figureIn the above figure, Binghom plastic is represented by the curve .

Question: During fluid flow, variation of shear stress(τ) with velocity gradientat constant pressure temperature is shown below in the figureIn the above figure, Binghom plastic is represented by the curve .
[A].

V

[B].

II

[C].

III

[D].

I

Answer: Option B

Explanation:

No answer description available for this question.

In case of unsteady fluid flow, conditions & flow pattern change with the passage of time at a position in a flow situation. Which of the following is an example of unsteady flow?

Question: In case of unsteady fluid flow, conditions & flow pattern change with the passage of time at a position in a flow situation. Which of the following is an example of unsteady flow?
[A].

Discharge of water by a centrifugal pump being run at a constant rpm.

[B].

Water flow in the suction and discharge pipe of a reciprocating pump.

[C].

Water discharge from a vertical vessel in which constant level is maintained.

[D].

Low velocity flow of a highly viscous liquid through a hydraulically smooth pipe.

Answer: Option B

Explanation:

No answer description available for this question.

In case of turbulent flow of fluid through a circular pipe, the

Question: In case of turbulent flow of fluid through a circular pipe, the
[A].

mean flow velocity is about 0.5 times the maximum velocity.

[B].

velocity profile becomes flatter and flatter with increasing Reynolds number.

[C].

point of maximum instability exists at a distance of 2r/3 from the pipe wall (r = pipe radius).

[D].

skin friction drag, shear stresses, random orientation of fluid particles and slope of velocity profile at the wall are more.

Answer: Option D

Explanation:

No answer description available for this question.

In case of laminar flow of fluid through a circular pipe, the

Question: In case of laminar flow of fluid through a circular pipe, the
[A].

shear stress over the cross-section is proportional to the distance from the surface of the pipe.

[B].

surface of velocity distribution is a paraboloid of revolution, whose volume equals half the volume of circumscribing cylinder.

[C].

velocity profile varies hyperbolically and the shear stress remains constant over the cross-section.

[D].

average flow occurs at a radial distance of 0.5 r from the centre of the pipe (r = pipe radius).

Answer: Option B

Explanation:

No answer description available for this question.

Centre of pressure of a plane surface of arbitrary shape immersed vertically in a static mass of fluid

Question: Centre of pressure of a plane surface of arbitrary shape immersed vertically in a static mass of fluid
[A].

lies above the centroid of the plane surface.

[B].

is independent of the specific weight of the fluid.

[C].

is different for different fluids.

[D].

is at the centroid of the plane surface.

Answer: Option B

Explanation:

No answer description available for this question.

__________ isused for measuring the static pressure exerted on the wall by a fluid flowing parallel to the wall in a pipeline.

Question: __________ isused for measuring the static pressure exerted on the wall by a fluid flowing parallel to the wall in a pipeline.
[A].

Venturimeter

[B].

Pressure gauge

[C].

Pitot tube

[D].

Orificemeter

Answer: Option C

Explanation:

No answer description available for this question.

An ideal plastic substance indicates no deformation, when stressed upto yield stress, but behaves like a Newtonion fluid beyond yield stress. Which of the following is an ideal plastic ?

Question: An ideal plastic substance indicates no deformation, when stressed upto yield stress, but behaves like a Newtonion fluid beyond yield stress. Which of the following is an ideal plastic ?
[A].

Sewage sludge

[B].

Rubber latex

[C].

Blood

[D].

Sugar solution

Answer: Option A

Explanation:

No answer description available for this question.