A nozzle is attached to a pipe as shown in Fig. 8-33. The inside diameter of the pipe is 100 mm, while the water jet exiting from the nozzle has a diameter of 50 mm. If the pressure at section 1 is 500 kPa, determine the water jet's velocity. 100-mm diameter 1 PI = 500 kPa Water (2) D₂ = ? 50-mm diameter Fig. 8-33
A nozzle is attached to a pipe as shown in Fig. 8-33. The inside diameter of the pipe is 100 mm, while the water jet exiting from the nozzle has a diameter of 50 mm. If the pressure at section 1 is 500 kPa, determine the water jet's velocity. 100-mm diameter 1 PI = 500 kPa Water (2) D₂ = ? 50-mm diameter Fig. 8-33
Chapter2: Loads On Structures
Section: Chapter Questions
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
Transcribed Image Text:A nozzle is attached to a pipe as shown in Fig. 8-33. The inside diameter of the pipe is 100 mm, while the water
jet exiting from the nozzle has a diameter of 50 mm. If the pressure at section 1 is 500 kPa, determine the water
jet's velocity.
100-mm diameter
PI = 500 kPa
Water
50-mm
diameter
Fig. 8-33
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