Home» Online Test » Civil Engineering » Hydraulics Online Test » Paper 1 » Paper 2 » Paper 3 0% Sorry, time's up. To complete the online test, please restart it. Created by Vikash chaudhary This is a FREE online test. Beware of scammers who ask for money to attend this test. Get fresh, new questions in each attempt. Total Questions: 50 Time Allotted: 50 minutes Passing Score: 70% Randomization: Yes Certificate: Yes Do not refresh the page! 👍 All the best! 1 / 50 1. Hydrostatic pressure on a dam depends upon its a) length b) depth c) shape d) both (b) and (c) of the above 2 / 50 2. *Pressure head is given by a) P/w b) z c) v/2g d) all 3 / 50 3. The most efficient channel section is a) semi-circular b) rectangular c) triangular d) trapezoidal 4 / 50 4. *The orifice used for low discharge is a) rectangular b) circular c) square d) triangular 5 / 50 5. *The main assumption of Bernoulli's equation is a) the velocity of energy of liquid particles across any cross-section of a pipe is uniform b) no external force except gravity acts on the liquid c) there is no loss of energy of the liquid while flowing d) all of the above 6 / 50 6. *Surface tension is the force a) per unit length b) per unit area c) per unit volume d) all of the above 7 / 50 7. *If fluid or flow parameters at any given instant remain the same at every point in space, it is called: a) steady flow b) laminar flow c) uniform flow d) rotational flow 8 / 50 8. A steady uniform flow is through a a) long pipe at decreasing rate b) long pipe at constant rate c) long pipe at increasing rate d) none of the above 9 / 50 9. *The specific weight of water 1000 kg/m^3 a) at normal pressure of 760 mm b) at 4°C temperature c) at mean sea level d) all of the above 10 / 50 10. Specific weight of liquid a) remains constant at every place b) does not remain constant at every place c) varies from place to place d) does not vary on any other planet except earth 11 / 50 11. *Bernoulli's equation is applied to a) venturimeter b) orifice meter c) pitot tube d) all of the above 12 / 50 12. For any channel section, the specific energy increase with a) decreases in depth of super critical flow b) increases in depth of super critical flow c) increases in depth of sub critical flow d) none of the above 13 / 50 13. In the case of leveling by a level pipe, the level is indicated by a) upper face b) middle face c) lower face d) all of the above 14 / 50 14. Gauge pressure is a) absolute - atmosphere b) absolute + atmosphere c) atmospheric ± absolute d) none of the above 15 / 50 15. The numerical value of vorticity is.....of the rotation a) twice b) thrice c) same d) all of the above 16 / 50 16. Rotation is defined as the movement of a fluid element in such a way that both of its axes rotate in... a) the same direction b) different directions c) both of the above d) none of the above 17 / 50 17. *Cipolleti weir is a a) rectangular weir whose length is kept 3 times the height of the water above the sill b) triangular weir, whose notch angle is 90° c) trapezoidal weir, whose sides slope 1 horizontal to 4 verticals d) a combination of rectangular and triangular weirs 18 / 50 18. The capillary rise or fall of the liquid is given by a) h = σ cos θ / 4ρgd b) h = 4σ cos θ / ρgd c) h = 8σ cos θ / ρgd d) none of the above 19 / 50 19. *Water cushion is used to a) sit in the house b) destroy the energy c) produce energy d) none of the above 20 / 50 20. Hooke's law for solids is analogous to a) Newton's law of viscosity b) Pascal's law c) Boundary layer theory d) continuity equation 21 / 50 21. The two depths at which the specific energy is the same are called a) alternate depths b) conjugate depths c) critical depths d) normal depths 22 / 50 22. ........ is defined as the maximum increase in water level in the path of the flow of water a) afflux b) rising of the wall c) flood d) rainfall 23 / 50 23. *Bernoulli's theorem deals with the law of conservation of a) energy b) all of the above c) mass d) momentum 24 / 50 24. *The atmospheric pressure varies with a) altitude b) temperature c) weather conditions d) none of the above 25 / 50 25. *The upper surface of the notch over which water flows is known as a) vein b) nappe c) sill d) none of the above 26 / 50 26. For a long pipe, the head loss a) at the entrance is ignored b) at the outlet is ignored c) at the entrance and outlet both are ignored d) due to friction is ignored 27 / 50 27. In a flowing liquid, a particle may possess a) potential energy b) kinetic energy c) pressure energy d) all of the above 28 / 50 28. *The upper surface of the weir over which water flows is known as: a) vein b) nappe c) sill d) none of the above 29 / 50 29. The ratio of the mean velocity to the surface velocity in open channels is equal to a) 0.55 b) 0.75 c) 0.88 d) 1.75 30 / 50 30. *Stoke is the unit of a) surface tension b) viscosity c) kinematic viscosity d) none of the above 31 / 50 31. The term P/pg is known as a) kinetic energy b) pressure energy per unit weight c) kinetic energy per unit weight d) none of the above 32 / 50 32. The water immediately downstream of the conduit or weir is called a) head water b) tail water c) main water d) surplus water 33 / 50 33. The ratio of the inertia and gravitational force acting in any flow, ignoring other forces, is called a) Euler number b) Froude number c) Reynolds number d) Weber number 34 / 50 34. The viscosity of gases varies with temperature a) directly proportional b) inversely proportional c) constant d) none of the above 35 / 50 35. Head loss due to friction in a pipe is given by the Darcy-Weisbach equation a) h_f = 4fLV^2/2gd b) h_f = fLV^2/2gd c) h_f = 0.5V^2 / 2g d) h_f = (v_1-v_2)^2 / 2g 36 / 50 36. *Uniform flow is said to occur when a) the size and shape of the cross-section in a particular length remain constant b) the size and shape of the cross-section change along a length c) the frictional loss in the particular length of the channel will be more than the drop in elevation d) the frictional loss in the particular length of the channel will be less than the drop in elevation 37 / 50 37. The hydrostatic force exerted by 2 m deep water on the gate downstream is equal to a) 40 kN b) 10 kN c) 20 kN d) 30 kN 38 / 50 38. *Venturimeter is used to measure a) rate of flow b) velocity c) depth of flow d) all of the above 39 / 50 39. 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 a) √2gh b) Q/L(H-L) c) Q/L(H+L) d) L(H+S)/Q 40 / 50 40. *The types of instrument used to measure low pressure with accuracy is a) piezometer b) barometer c) micro manometer d) mechanical gauge 41 / 50 41. *The continuity equation deals with the law of conservation of a) mass b) momentum c) energy d) force 42 / 50 42. *Surface float is used to measure a) pressure b) difference in pressure c) viscosity of flow d) none of the above 43 / 50 43. Cavitations in flowing fluid occurs when a) the total energy suddenly increases b) the total energy suddenly decreases c) the total energy is constant d) none of the above 44 / 50 44. Euler's number is the ratio of a) inertia force to pressure force b) pressure force to elastic force c) elastic force to viscous force d) viscous force to inertia force 45 / 50 45. If the fluid particles move in straight lines and all the lines are parallel to the surface, the flow is called a) steady b) uniform c) compressible d) laminar 46 / 50 46. The maximum velocity in an open channel occurs a) at the bottom of the channel b) at 1/2 the depth of the channel c) slightly below the free surface d) at the free surface 47 / 50 47. One horsepower is equal to a) 1 kW b) 0.746 kW c) 0.836 kW d) 0.756 kW 48 / 50 48. When the pipes are connected in parallel, the total loss of head a) is equal to the sum of the loss of head in each pipe b) is the same as in each pipe c) is equal to the reciprocal of the sum of the loss of head in each pipe d) none of the above 49 / 50 49. *The total pressure force on a plane area is equal to the area multiplied by the intensity of pressure at its centroid if a) the area is horizontal b) the area is vertical c) the area is inclined d) all of the above 50 / 50 50. *Capillary rise is proportional to a) surface tension b) unit weight of water c) diameter of the pipe d) none of the above Please provide accurate information so we can send your Achievement Certificate by mail. NameEmailPhone Number Your score isShare your achievement! LinkedIn Facebook 0% Restart Test Please provide your feedback. Thank you for your valuable feedback. Send feedback Buy Hydraulics MCQ PDF for Offline Study