13. Firefighters use a hose with a 2 cm exit nozzle connected to a hydrant with an 8 cm diameter opening to attack a fire on the second floor of a building 6 m above the hydrant, as shown in the figure. What pressure must be supplied at the hydrant to produce an exit velocity of 15 m/s? (Assume the density of water is 1000 kg/m², and the exit pressure is 1 × 10° Pa.) 2 cm 18 m/s Water exit velocity 6m 8 cm (A) 1.7 x 10° Pa (B) 2.0 × 10° Pa (C) 2.6 × 10° Pa (D) 3.2 × 10° Pa

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Chapter1: Units, Trigonometry. And Vectors
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13. Firefighters use a hose with a 2 cm exit nozzle
connected to a hydrant with an 8 cm diameter
opening to attack a fire on the second floor of a
building 6 m above the hydrant, as shown in the
figure. What pressure must be supplied at the hydrant
to produce an exit velocity of 15 m/s? (Assume the
density of water is 1000 kg/m³, and the exit pressure
is 1 x 10° Pa.)
2 cm
18 m/s
Water exit
velocity
6m
8 cm
(A) 1.7 × 10° Pa
(B) 2.0 x 10° Pa
(C) 2.6 × 10° Pa
(D) 3.2 x 10° Pa
Transcribed Image Text:13. Firefighters use a hose with a 2 cm exit nozzle connected to a hydrant with an 8 cm diameter opening to attack a fire on the second floor of a building 6 m above the hydrant, as shown in the figure. What pressure must be supplied at the hydrant to produce an exit velocity of 15 m/s? (Assume the density of water is 1000 kg/m³, and the exit pressure is 1 x 10° Pa.) 2 cm 18 m/s Water exit velocity 6m 8 cm (A) 1.7 × 10° Pa (B) 2.0 x 10° Pa (C) 2.6 × 10° Pa (D) 3.2 x 10° Pa
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