Q.1 a. An object is revolving in a vertical circle. Draw a free-body diagram and apply the dynamics of circular motion to write equations at i. at the top of the circle ii. at the bottom of the circle b. The ball is swung in the horizontal direction. What force must a person exert on a string attached to the 0.5 kg ball to make it revolve in a horizontal circle of radius 3.0 m. The ball makes 120 rpm. c. The 0.5 kg ball is swung in a vertical direction on the end of s 3.0 m long cord of negligible mass. i. what is the minimum speed at the top of the circle so that the ball continues to move in a circle, and ii. what is the tension in the string if the speed at the bottom is triple the speed at the top.

College Physics
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Chapter6: Uniform Circular Motion And Gravitation
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Q.1
a. An object is revolving in a vertical circle. Draw a
free-body diagram and apply the dynamics of circular
motion to write equations at
i. at the top of the circle
ii. at the bottom of the circle
b. The ball is swung in the horizontal direction. What
force must a person exert on a string attached to the 0.5
kg ball to make it revolve in a horizontal circle of
radius 3.0 m. The ball makes 120 rpm.
c. The 0.5 kg ball is swung in a vertical direction on the
end of s 3.0 m long cord of negligible mass.
i. what is the minimum speed at the top of the circle so
that the ball continues to move in a circle, and
ii. what is the tension in the string if the speed at the
bottom is triple the speed at the top.
Refer to the example on the 2 blocks connected by an
inextensible string. If m₁ = 6.0 kg and m₂ = 3.0 kg,
coefficient of kinetic friction is 0.1, draw the free body
diagrams calculate the acceleration of the system and
the tension in the string.
Transcribed Image Text:Q.1 a. An object is revolving in a vertical circle. Draw a free-body diagram and apply the dynamics of circular motion to write equations at i. at the top of the circle ii. at the bottom of the circle b. The ball is swung in the horizontal direction. What force must a person exert on a string attached to the 0.5 kg ball to make it revolve in a horizontal circle of radius 3.0 m. The ball makes 120 rpm. c. The 0.5 kg ball is swung in a vertical direction on the end of s 3.0 m long cord of negligible mass. i. what is the minimum speed at the top of the circle so that the ball continues to move in a circle, and ii. what is the tension in the string if the speed at the bottom is triple the speed at the top. Refer to the example on the 2 blocks connected by an inextensible string. If m₁ = 6.0 kg and m₂ = 3.0 kg, coefficient of kinetic friction is 0.1, draw the free body diagrams calculate the acceleration of the system and the tension in the string.
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