Bernoulli’s Theorem and Its Applications

Author:Embibe Experts
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Important Questions on Bernoulli’s Theorem and Its Applications

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Bernoulli's theorem is based on the principle of conservation of

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A cylindrical tank with a large diameter is filled with water. Water drains out through a hole at a bottom of the tank. If the cross-sectional area of the hole is 6 cm2 then the drainage rate m3 s-1 when the depth of the water is 0.2 m, is

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The pressure of water in a water pipe when tap is opened and closed is respectively 3 × 105 N/m2 and 3.5 × 105 N/m2 .With open tap the velocity of water flowing is:

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An application of Bernoulli's equation for fluid flow is found in

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A fluid is flowing through a horizontal pipe of varying cross-section, with vms1 at a point where the pressure is P Pascal. At another point where pressure P2 Pascal its speed is V ms-1. If the density of the fluid is ρkgm-3 and the flow is streamline, then V is equal to 

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There is a hole in the bottom of tank having water. If total pressure at the bottom is 3 atm 1 atm=105 N m-2, then, the velocity of water flowing from hole is

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A manometer connected to a closed tap reads 4.5×105 pascal. When tap is opened the reading of manometer falls to 4×105 pascal. The velocity of flow is

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Sudden fall of atmospheric pressure by a large amount indicates________ .

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Air is streaming past a horizontal air-plane wing such that its speed in 120 m s-1 over the upper surface and 90 m s-1 at the lower surface. If the density of air is 1.3 kg m-3 and the wing is 10 m long and has an average width of 2 m, then the difference of the pressure on the two sides of the wing is

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A cylinder of height 20 m is completely filled with water. The velocity (in m s-1) of efflux of water through a small hole on the side of cylinder near bottom is

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Bernoulli's principle is based on the principle of

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A plane is in level flight at constant speed and each of its two wings has an area of 20 m2. If the speed of the air is 180 km h-1 over the lower wing and 216 km h-1 over the upper wing surface, determine the plane's mass. (Take air density to be 1 kgm-3 and g=10 m s-2).

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A tank of height 5 m is full of water. There is a hole of cross-sectional area 1 cm2 in its bottom. The initial volume of water that will come out from this hole per second is: 

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Water flows through a frictionless duct with a cross-section varying as shown in figure. Pressure P at points along the axis is represented by: 

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Water from a tap emerges vertically downwards with an initial speed of 1.0 m/s. The cross-sectional area of tap is 10–4 m2. Assume that the pressure is constant throughout the stream of water and that the flow is steady, the cross-sectional area of stream 0.15 m below the tap is :-

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The velocity of the liquid coming out of a small hole of a large vessel containing two different liquids of densities 2ρ and ρ as shown in the figure is

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A cylindrical container of radius R and height h is completely filled with a liquid. Two horizontal L shaped pipes of a small cross-section area a are connected to the cylinder as shown in the figure. Now the two pipes are opened and fluid starts coming out of the pipes horizontally in opposite directions. Then the torque due to ejected liquid on the system is:

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Water is flowing through a long horizontal tube. Let PA and PB be the pressures at two points A and B of the tube. Which of the following is true?

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There is a hole in the bottom of a tank having water. If the total pressure at the bottom is 3 atm (1 atm=105 N m-2), then, the velocity of water flowing from the hole is