A garden hose with a diameter of 1.6 cm has water flowing in it with a speed of 1.3 m/s and a pressure of 1.5 atmospheres. At the end of the hose is a nozzle with a diameter of 0.64 cm. Find the speed of water in the nozzle
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- While taking a shower, you notice that the shower head is made up of 44 small round openings, each with a radius of 2.00 mm. You also determine that it takes 5.00 s for the shower to completely fill a 1.00-liter container you hold in the water stream. The water for the shower is pumped by a pump that is 5.50 m below the level of the shower head. The pump maintains an absolute pressure of 1.50 atm. Use g = 10 m/s2, and assume that 1 atmosphere is 1.0 105 Pa. (a) At what speed does the water emerge from the shower head? (b) What is the speed of the water in the pipe connected to the pump? (c) What is the cross-sectional area of the pipe connected to the pump?Suppose you spray your sister with water from a garden hose. The water is supplied to the hose at a rate of 0.573 × 10–3 m³/s and the diameter of the nozzle you hold is 5.09 × 10-3 m. At what speed v does the water exit the nozzle?4. A garden hose having an internal diameter of 3.5 cm is connected to a lawn sprinkler that consist merely of an enclosure with 12 holes, each 0.5 cm in diameter. If the water in the hose has a speed of 3 m/s, at what speed does it leaves the sprinkler holes?
- A garden hose having with an internal diameter of 1.7 cm is connected to a (stationary) lawn sprinkler that consists merely of an container with 23 holes, each 0.20 cm in diameter. If the water in the hose has a speed of 0.93 m/s, at what speed does it leave the sprinkler holes? m/sA fluid passes through the tube with a mass flow rate of 1.50 kg/s. If the tube's diameter narrows to half its original diameter, then its mass flow rate will be, 0.375 kg/s 0.75 kg/s 1.06 kg/s 1.50 kg/s 2.12 kg/s 3.0 kg/s 6.0 kg/sSuppose you spray your sister with water from a garden hose. The water is supplied to the hose at a rate of 0.529 × 10-3 m³/s and the diameter of the nozzle you hold is 5.67 x 10-3 m. At what speed v does the water exit the nozzle? U = m/s