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Hydraulics Online Test – Paper 3

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Created by 83a36dcfd5c4caff12bc80f0020c9c749e12cbbbdb7c406dc1dd39996cb85836?s=32&d=monsterid&r=g gkaimVikash chaudhary

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  • Total Questions: 50
  • Time Allotted: 50 minutes
  • Passing Score: 70%
  • Randomization: Yes
  • Certificate: Yes
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1. In the case of a broad-crested weir, the depth of water h at the end of the still is given by

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2. The multiplying factor for converting one poise into MKS unit of dynamic viscosity is

3 / 50

3. If H is the height of the liquid above the sill, the effect of end contraction on each side, according to Francis' formula, is

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4. The minimum head loss will occur in

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5. If the Froude number in open channel flow is equal to 1.0, the flow is called

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6. A ideal fluid

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7. In a flowing liquid, a particle may possess

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8. When the pipes are connected in parallel, the total loss of head

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9. *In flow, the liquid particles may possess

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10. *The flow in which the path of individual particles of liquid cross each other is called

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11. *The difference between the total energy gradient line and the total energy line is

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12. The term z is known as

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13. An intensifier is used to increase

14 / 50

14. The total energy of a liquid in motion is equal to:

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15. *The wetted perimeter of a channel is given by

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16. The profile of rising water on the upstream side of the dam is called

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17. *If the velocity of fluid particles varies from point to point in magnitude and direction, as well as from instant to instant, the flow is said to be

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18. The basic head loss in a long pipe is:

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19. Specific weight of liquid

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20. *The pressure in pipe flow is normally

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21. *Hydraulic gradient is equal to

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22. Velocity of flow may be determined using:

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23. *The continuity equation deals with the law of conservation of

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24. *The equation of continuity of fluids is applicable only if

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25. Liquids

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26. Hydraulic gradient line and total energy line are

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27. *The rate of flow through a venturimeter varies as

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28. *Molecules of fluids get attracted due to

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29. The inlet length of a venturimeter

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30. The head of water representing in the case of HGL line is known as

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31. *The hydraulic radius is equal to

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32. If the forces are due to inertia and gravity, and frictional resistance plays only a minor role, the design of channels is made by comparing

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33. *Differential manometers are used to measure

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34. *Capillarity of water is

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35. *Manometers are used to measure

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36. Mouthpieces are used to measure

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37. *Hydraulic gradient line (H.G.L.) represents the sum of

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38. If the density of a fluid changes from point to point in a flow region, it is called

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39. For a long pipe, the head loss

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40. The depth of flow after the hydraulic jump is

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41. If the fluid particles move in straight lines and all the lines are parallel to the surface, the flow is called

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42. In an open channel flow

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43. Which of the following quantities are dimensionless?

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44. *The upper surface of the notch over which water flows is known as

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45. *Bernoulli's equation is applied to

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46. *If the volume of liquid weighing 3000 kg is 4 cubic meters, then the specific gravity is

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47. *The condition for the maximum velocity and discharge is given by (closed flow)

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48. *1 m head is equivalent to

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49. *The term v^2/2g is known as

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50. *The difference between the total energy line and the hydraulic gradient line is

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