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A garden hose having an internal diamete...

A garden hose having an internal diameter 2.0 cm is connected to a lawn sprinkle that consists of an enclosure with 24 holes , each 0.125 cm in diameter. If water in the hose has a speed of `90.0 cm s^(-1)` , find the speed of the water having the sprinkler hole.

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A garden hose having an internal diameter 2.0 cm is connected to a lawn sprinkle that consists of an enclosure with 24 holes , each 0.125 cm in diameter. If water in the hose has a speed of 90.0 cm s^(-1) , find the speed of of 90.0 cm s^(-1) , find the speed of the water having the sprinkler hole.

A garden hose with an internal diameter of 1.9 cm is connected to a (stationary) lawn sprinkler that consists merely of a container with 20 holes, each 0.15 cm in diameter. If the water in the hose has a speed of 0.91 m/s, at what speed does it leave the sprinkler holes?

A garden pipe has an internal diameter of 4 cm. It is connected to a lawn sprinkler that consists of 24 holes at the other end. Each hole is of radius 0.06 cm. If the water in the pipe has a speed of 80 cm s^(-1) , find its speed through sprinkler holes.

A pipe having an internal diameter D is connected to another pipe of same size. Water flows into the second pipe through n holes, each of diameter d. if the water in the first pipe has speed v, the speed of water leaving the second pipe is

A gardening pipe having an internal radius R is connected to a water sprinkler havmg n holes each of radius r. The water in the pipe has a speed v. What is the speed of water leaving the sprinkler ?

A shower head having 20 holes each of 0.1 cm in diameter is connected to a water pipe having an internal diameter of 1.8 cm. The speed of water flowing in the pipe is 108 cms ""^(-1) . Calculate the speed of water leaving the shower head holes.

A lawn sprinkler has 20 holes, each of cross-sectional area 2.0 x 10^(-2) cm^(2) , and is connected to a hose pipe of cross sectional area 2.4 cm^(2) . If the speed of water in the hose pipe is 1.5 ms^(-1) , the speed of water as it emerges from the holes is

A hose pipe has a diameter of 2.5 cm and is required to direct a jet of water to a height of atleast 40 cm . Find the minimum power of the pump needed for this hose.

Water is flowing through two horizontal pipes of different diameters which are connected together. The diameters of the two pipes are 3 cm and 6 cm respectively. If the speed of water in the narrower tube is 4 ms^(-1) . Then the speed of water in the wider tube is

SL ARORA-Mechanical Properties of fluids-Exercise
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  2. Water flows through a horizontal pipe of varying cross-section at the ...

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  3. A garden hose having an internal diameter 2.0 cm is connected to a law...

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  4. In normal adult the average speed of the though the aorta (which has a...

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  5. Velocity of flow of water in a horizontal pipe is 4.9 ms^(-1) Find the...

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  6. The reading of a pressure meter attached to a horizontal closed pipe i...

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  7. water enters at one end of a horizontal pipe of non-uniform cross -sec...

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  8. Water is flowing with a speed of 2m//s in a horizontal pipe with cross...

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  9. A tank cotaining water has an orifice 10 m below the surface of water ...

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  10. Calculate speed of efflux of kerosene from an orifice of a tank in wh...

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  11. Water flows at the rate of 4 litres per second through an orifice at t...

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  12. The diameter of a pipe at two points , where a venturimeter is connect...

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  13. A venturimeter is 37.5 cm. Diameter in mains and 15 cm. Diameter in th...

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  14. A soap film is formed on a rectangular frame of length 7 cm dipping in...

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  15. A soap film is on a rectangular wire ring of size 5cm ** 4 cm. If the ...

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  16. A soap bubble is blown to a diameter of 7 cm. if 36960 ergs of work is...

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  17. A soap bubble of radius 1//sqrtpi "cm" is expanded to radius 2//sqrtpi...

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  18. What amount of energy will be liberated if 1000 droplets of water, eac...

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  19. Calculate the amount force required to take away a flat plate of radiu...

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  20. A thin wire is bent in the form of a ring of diameter 3.0 cm . The rin...

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