The user of this water jet adjusts the water's flow and velocity so that the vertically downward linear momentum on the left is mv = 11 kg m/s² while on the right it is m,v, = 34 kg·m/s². Each jet is located horizontally 36 cm from the centre of rotation (shown as > ). The water that flows in (Qin) passes directly through the center of rotation. Moments are measured as positive counter clockwise (+ve CCW). Determine the rate of change in angular momentum of the system about the center of rotation. The sign of your answer is important but no units are required in your answer. mar mrvr Qin Vin

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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The user of this water jet adjusts the water's flow and velocity so that the vertically downward linear momentum on
the left is
mv
= 11 kg m/s² while on the right it is m,v, = 34 kg·m/s². Each jet is located horizontally 36 cm from the
centre of rotation (shown as > ). The water that flows in (Qin) passes directly through
the center of rotation. Moments are measured as positive counter clockwise (+ve CCW).
Determine the rate of change in angular momentum of the system about the center of rotation. The sign of
your answer is important but no units are required in your answer.
mar
mrvr
Qin Vin
Transcribed Image Text:The user of this water jet adjusts the water's flow and velocity so that the vertically downward linear momentum on the left is mv = 11 kg m/s² while on the right it is m,v, = 34 kg·m/s². Each jet is located horizontally 36 cm from the centre of rotation (shown as > ). The water that flows in (Qin) passes directly through the center of rotation. Moments are measured as positive counter clockwise (+ve CCW). Determine the rate of change in angular momentum of the system about the center of rotation. The sign of your answer is important but no units are required in your answer. mar mrvr Qin Vin
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