In the opposite figure, a ball of mass 1.5kg of rubber is attached to the end of a rope and then rotated in the vertical plane in the form of a circular path of radius 0.8m with a constant frequency. If the linear velocity of the ball is 40m / s, find the value of the tension in the rope at point B? A The movement is T vertical

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter7: Rotational Motion And Gravitation
Section: Chapter Questions
Problem 56AP: Keratinocytes are the most common cells in the skins outer layer. As these approximately circular...
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In the opposite figure, a ball of mass 1.5kg of rubber is attached to the
end of a rope and then rotated in the vertical plane in the form of a
circular path of radius 0.8m with a constant frequency. If the linear
velocity of the ball is 40m / s, find the value of the tension in the rope at
point B?
A
The
movement is
T
vertical
B
Transcribed Image Text:In the opposite figure, a ball of mass 1.5kg of rubber is attached to the end of a rope and then rotated in the vertical plane in the form of a circular path of radius 0.8m with a constant frequency. If the linear velocity of the ball is 40m / s, find the value of the tension in the rope at point B? A The movement is T vertical B
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