1. A 3.5 kg steel ball is swung at a constant speed in a vertical circle of radius 1.2 m, on the end of a light, rigid steel rod, as illustrated. If the ball has a frequency of 1.0 Hz, calculate the tension in the rod due to the mass at the top (A) and at the bottom (B) positions.

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Chapter1: Units, Trigonometry. And Vectors
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1. A 3.5 kg steel ball is swung at a constant speed in a vertical circle of radius 1.2 m, on the end
of a light, rigid steel rod, as illustrated. If the ball has a frequency of 1.0 Hz, calculate the tension
in the rod due to the mass at the top (A) and at the bottom (B) positions.
Transcribed Image Text:1. A 3.5 kg steel ball is swung at a constant speed in a vertical circle of radius 1.2 m, on the end of a light, rigid steel rod, as illustrated. If the ball has a frequency of 1.0 Hz, calculate the tension in the rod due to the mass at the top (A) and at the bottom (B) positions.
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