A vertical, circular cross sectional jet of water leaves a nozzle with diameter, d, as shown in Figure 4. The volume flow rate of the water is equal to Q. The water jet strikes a conical deflector and the force of the water jet suspends the conical deflector at height H above the nozzle. The weight of the conical deflector is given by W. The water jet spreads uniformly on the surface of the conical deflector, as shown in the figure. (a) Determine the velocity of the water jet prior to striking the conical deflector in term of Q, d and H? (b) Calculate H, given Q=0.005 m³/s, d= 20 mm, W= 15.0 N and 0=45° . 20 H

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A vertical, circular cross sectional jet of water leaves a nozzle with diameter, d, as shown in
Figure 4. The volume flow rate of the water is equal to Q. The water jet strikes a conical
deflector and the force of the water jet suspends the conical deflector at height H above the
nozzle. The weight of the conical deflector is given by W. The water jet spreads uniformly on
the surface of the conical deflector, as shown in the figure.
(a)
Determine the velocity of the water jet prior to striking the conical deflector in term of
Q, d and H?
Calculate H, given Q= 0.005 m³/s, d= 20 mm, W= 15.0 N and 0=45° .
(Ь)
20
H
Figure 4
Transcribed Image Text:A vertical, circular cross sectional jet of water leaves a nozzle with diameter, d, as shown in Figure 4. The volume flow rate of the water is equal to Q. The water jet strikes a conical deflector and the force of the water jet suspends the conical deflector at height H above the nozzle. The weight of the conical deflector is given by W. The water jet spreads uniformly on the surface of the conical deflector, as shown in the figure. (a) Determine the velocity of the water jet prior to striking the conical deflector in term of Q, d and H? Calculate H, given Q= 0.005 m³/s, d= 20 mm, W= 15.0 N and 0=45° . (Ь) 20 H Figure 4
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