A pipe AB, as shown in the figure, rotates with a constant angular velocity o about a vertical axis CD. The angle between the pipe and the axis is equal to a. A small ball M may move inside the pipe. Initially, it is located at a distance a from the axis and its velocity is equal to zero. Neglect friction inside the pipe. Determine the ball relative velocity as a function of its location along the pipe. Adopt a=45° in calculations. The vertical vector of 45° M the gravitational acceleration is equal to g.
A pipe AB, as shown in the figure, rotates with a constant angular velocity o about a vertical axis CD. The angle between the pipe and the axis is equal to a. A small ball M may move inside the pipe. Initially, it is located at a distance a from the axis and its velocity is equal to zero. Neglect friction inside the pipe. Determine the ball relative velocity as a function of its location along the pipe. Adopt a=45° in calculations. The vertical vector of 45° M the gravitational acceleration is equal to g.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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
Transcribed Image Text:A pipe AB, as shown in the figure, rotates
with a constant angular velocity o about a
vertical axis CD. The angle between the pipe
and the axis is equal to a. A small ball M may
move inside the pipe. Initially, it is located at
a distance a from the axis and its velocity is
equal to zero. Neglect friction inside the pipe.
Determine the ball relative velocity as a
function of its location along the pipe. Adopt
B.
45°
a=45° in calculations. The vertical vector of
the gravitational acceleration is equal to g.
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