1. A nozzle with a diameter of 0.500 cm is attached to a garden hose with a radius of 0.900 cm. Water was flowing horizontally and frictionless from the garden hose at 1.50 m/s. If the absolute pressure in the nozzle is 1.01 x 105 N/m² (atmospheric, as it must be), what is the exit pressure in the hose? (modified from Ling et al., 2018, Example 14.5)

Principles of Physics: A Calculus-Based Text
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Chapter15: Fluid Mechanics
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1.
A nozzle with a diameter of 0.500 cm is attached
to a garden hose with a radius of 0.900 cm. Water was flowing
horizontally and frictionless from the garden hose at 1.50 m/s. If
the absolute pressure in the nozzle is 1.01 x 105 N/m²
(atmospheric, as it must be), what is the exit pressure in the
hose? (modified from Ling et al., 2018, Example 14.5)
Transcribed Image Text:1. A nozzle with a diameter of 0.500 cm is attached to a garden hose with a radius of 0.900 cm. Water was flowing horizontally and frictionless from the garden hose at 1.50 m/s. If the absolute pressure in the nozzle is 1.01 x 105 N/m² (atmospheric, as it must be), what is the exit pressure in the hose? (modified from Ling et al., 2018, Example 14.5)
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