(0=30°). As seen in the figure below, a sprinkler system is used for garden irrigation. The working fluid enters the system at a rate of 3.42 liters/s. Calculate the required torque [N.m] to keep the...


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(0=30°).<br>As seen in the figure below, a sprinkler system is<br>used for garden irrigation. The working fluid<br>enters the system at a rate of 3.42 liters/s.<br>Calculate the required torque [N.m] to keep the<br>system stable (NOTE: Take p-=1000 kg/m³)<br>Nozzle exit area normal to<br>relative velocity = 18 mm<br>r= 0.5m<br>

Extracted text: (0=30°). As seen in the figure below, a sprinkler system is used for garden irrigation. The working fluid enters the system at a rate of 3.42 liters/s. Calculate the required torque [N.m] to keep the system stable (NOTE: Take p-=1000 kg/m³) Nozzle exit area normal to relative velocity = 18 mm r= 0.5m

Jun 11, 2022
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