A pendulum is made from a 7.50-kilogram mass attached to a rope connected to the ceiling of a gymnasium. The mass is pushed to the side until it is at position A, 1.5 meters higher than its equilibrium position. After it is released from rest at position A, the pendulum moves freely back and forth between positions A and B, as shown in the diagram below. Ceiling 7.50 kg [1.5 m Equilibrium position What is the total amount of kinetic energy that the mass has as it swings freely through its equilibrium position? [Neglect friction.] 1. 11 J 2. 94 J 3. 110 J 4. 920 J

Physics for Scientists and Engineers: Foundations and Connections
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Chapter8: Conservation Of Energy
Section: Chapter Questions
Problem 42PQ: A 1.50-kg box rests atop a massless vertical spring with k = 4250 N/m that has been compressed by...
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Q9
A pendulum is made from a 7.50-kilogram mass attached to a rope connected to the ceiling of a gymnasium.
The mass is pushed to the side until it is at position A, 1.5 meters higher than its equilibrium position. After it is
released from rest at position A, the pendulum moves freely back and forth between positions A and B, as
shown in the diagram below.
Ceiling
7.50kg
1.5 m
-- ---
Equilibrium
position
What is the total amount of kinetic energy that the mass has as it swings freely through its equilibrium
position? Neglect friction.]
1. 11 J
2. 94 J
3. 110 J
4. 920 J
Transcribed Image Text:Q9 A pendulum is made from a 7.50-kilogram mass attached to a rope connected to the ceiling of a gymnasium. The mass is pushed to the side until it is at position A, 1.5 meters higher than its equilibrium position. After it is released from rest at position A, the pendulum moves freely back and forth between positions A and B, as shown in the diagram below. Ceiling 7.50kg 1.5 m -- --- Equilibrium position What is the total amount of kinetic energy that the mass has as it swings freely through its equilibrium position? Neglect friction.] 1. 11 J 2. 94 J 3. 110 J 4. 920 J
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