Q1: Water enters a two-armed lawn sprinkler along the vertical axis at a rate of 0.06 m³/s and leaves the sprinkler nozzles as 2-cm diameter jets at an angle of 0 from the tangential direction, as shown in Fig. 1. The length of each sprinkler arm is 0.45 m. Disregarding any frictional effects and air drag, determine the rate of rotation of the sprinkler in rev/min for (a) 0 = 0° and (b) 0 = 30°. Fig.1 -0.45m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q1:
Water enters a two-armed lawn sprinkler along
the vertical axis at a rate of 0.06 m³/s and
leaves the sprinkler nozzles as 2-cm diameter
jets at an angle of 0 from the tangential
direction, as shown in Fig. 1. The length of each
sprinkler arm is 0.45 m. Disregarding any
frictional effects and air drag, determine the
rate of rotation of the sprinkler in rev/min for
(a) 0 = 0° and (b) 0 = 30°.
Fig.1
-0.45mm
Transcribed Image Text:Q1: Water enters a two-armed lawn sprinkler along the vertical axis at a rate of 0.06 m³/s and leaves the sprinkler nozzles as 2-cm diameter jets at an angle of 0 from the tangential direction, as shown in Fig. 1. The length of each sprinkler arm is 0.45 m. Disregarding any frictional effects and air drag, determine the rate of rotation of the sprinkler in rev/min for (a) 0 = 0° and (b) 0 = 30°. Fig.1 -0.45mm
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