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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. *Cavitations is caused by

2 / 50

2. The hydrostatic force exerted by 2 m deep water on the gate downstream is equal to

3 / 50

3. ........ is defined as the maximum increase in water level in the path of the flow of water

4 / 50

4. The viscosity of liquids varies with temperature

5 / 50

5. *If a pitot tube is placed with its nose facing downstream, the liquid

6 / 50

6. If S is the height of the crest above the base of the channel and H is the head of water over the weir, whose length is L and discharge is Q m^3/sec, the velocity of approach Va is

7 / 50

7. *To measure very low pressure, we use:

8 / 50

8. For any channel section, the specific energy increase with

9 / 50

9. *Stoke is the unit of

10 / 50

10. *The hydraulic radius is equal to

11 / 50

11. A rise or fall of liquid in a glass tube of a very small diameter when dipped is

12 / 50

12. Hooke's law for solids is analogous to

13 / 50

13. *Manometers are used to measure

14 / 50

14. The minimum head loss will occur in

15 / 50

15. *The actual velocity through an orifice is........... than the theoretical velocity.

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16. Liquids or fluids

17 / 50

17. *The total pressure force on a plane area is equal to the area multiplied by the intensity of pressure at its centroid if

18 / 50

18. *An orifice is called a large orifice if the water head is

19 / 50

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

20 / 50

20. The ratio of the inertia and gravitational force acting in any flow, ignoring other forces, is called

21 / 50

21. The difference in pressure head measured by a mercury-oil differential manometer for a 20 cm difference of mercury level will be (specific gravity of oil-0.8)

22 / 50

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

23 / 50

23. In an open channels the analysis of a sugar is done by using

24 / 50

24. When the water level on the downstream side of a weir is above the top surface of a weir, the weir is known as:

25 / 50

25. Mass density of liquid (p) is given by

26 / 50

26. *The discharge passing through the crest having a length of 1.25m, a height of the flow of water 0.25m, and Cd = 0.035 is

27 / 50

27. *If the velocity, pressure, density, etc., do not change at a point with respect to time, the flow is called

28 / 50

28. *If fluid or flow parameters at any given instant remain the same at every point in space, it is called:

29 / 50

29. *The upper surface of the weir over which water flows is known as:

30 / 50

30. Liquids

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31. A ideal fluid

32 / 50

32. The phenomenon of rising of a liquid surface in a tube of small diameter relative to the adjacent normal level of the liquid is known as

33 / 50

33. The water immediately downstream of the conduit or weir is called

34 / 50

34. *Cipolleti weir is a

35 / 50

35. The line joining the points to which the liquid rises in vertical piezometer tubes fitted at different cross-sections of a conduit is known as

36 / 50

36. *The specific weight of water 1000 kg/m^3

37 / 50

37. *The discharge through a rectangular channel is maximum when

38 / 50

38. *Which of the following statements is valid?

39 / 50

39. *Capillary rise is proportional to

40 / 50

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

41 / 50

41. *Head loss increases with

42 / 50

42. Chazy's formula is used to determine

43 / 50

43. Water belongs to

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44. A siphon is an

45 / 50

45. Cavitations is collapsed by

46 / 50

46. *The rise of the water table, which takes place due to the transformation of the unstable shooting flow (super-critical) to the stable streaming is called

47 / 50

47. *A stepped notch is a combination of

48 / 50

48. In the case of a broad-crested weir, the depth of water h at the end of the still is given by

49 / 50

49. The Manning's formula for flow in an open channel is given by

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

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