24. A ball swings counterclockwise in a vertical circle at the end of a rope 1.50 m long. When the ball is 36.9° past the lowest point on its way up, its total acceleration is (-22.5 i + 20.2 ĵ) m/s². For that instant, (a) sketch a vec- tor diagram showing the components of its acceleration, (b) determine the magnitude of its radial acceleration, and (c) determine the speed and velocity of the ball.

Physics for Scientists and Engineers with Modern Physics
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ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
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Chapter6: Circular Motion And Other Applications Of Newton's Laws
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24. A ball swings counterclockwise in a vertical circle at
the end of a rope 1.50 m long. When the ball is 36.9° past
the lowest point on its way up, its total acceleration is
(-22.5 i + 20.2 ĵ) m/s². For that instant, (a) sketch a vec-
tor diagram showing the components of its acceleration,
(b) determine the magnitude of its radial acceleration, and
(c) determine the speed and velocity of the ball.
Transcribed Image Text:24. A ball swings counterclockwise in a vertical circle at the end of a rope 1.50 m long. When the ball is 36.9° past the lowest point on its way up, its total acceleration is (-22.5 i + 20.2 ĵ) m/s². For that instant, (a) sketch a vec- tor diagram showing the components of its acceleration, (b) determine the magnitude of its radial acceleration, and (c) determine the speed and velocity of the ball.
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