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  1. (i) Show that water leaves the nozzle at a speed of about 4 m/s. (density of water = 1000 kg/m³) (ii) Before it leaves the hose, the water has a speed of 0.68 m/s. Calculate the force on the hose. The water from the hose is sprayed onto a brick wall the base of which is firmly embedded in the ground. Explain why there is no overall effect on ...

  2. The flow rate of a garden hose is measured in pounds per square inch (psi) and determines how quickly water pumps through the garden hose. The size of the garden hose diameter will determine the stream of the psi.

  3. The diameter of garden hose is \(d = \frac{5}{8}\;{\rm{in}}\). The diameter of the round swimming pool is \(D = 6.1\;{\rm{m}}\). The depth of the pool is \(h = 1.4\;{\rm{m}}\). The speed of water flows from the hose is \(v = 0.40\;{\rm{m/s}}\).

  4. 12 wrz 2022 · A nozzle with a diameter of 0.500 cm is attached to a garden hose with a radius of 0.900 cm. The flow rate through hose and nozzle is 0.500 L/s. Calculate the speed of the water:

  5. 20 lut 2022 · A nozzle with a radius of 0.250 cm is attached to a garden hose with a radius of 0.900 cm. The flow rate through hose and nozzle is 0.500 L/s. Calculate the speed of the water (a) in the hose and (b) in the nozzle.

  6. 22 sie 2021 · Bends push the hose out, out along the direction of the radius of the bend. Reductions in diameter push the hose backward, in the axial direction opposite to the flow direction. Both forces come from changing the velocity of the fluid.

  7. A nozzle with a radius of 0.250 cm is attached to a garden hose with a radius of 0.900 cm. The flow rate through hose and nozzle is 0.500 L/s. Calculate the speed of the water (a) in the hose and (b) in the nozzle.