6. A 10 cm long spring, with a spring constant of 27 N/m, is used to reload the ball in a pinball machine. The spring is compressed by 4.0 cm by a mechanism in the machine and then let go. a. Calculate the elastic potential energy stored in the spring A new spring is fitted into the machine. It only needs to be compressed by 3.0 cm to store the same amount of elastic potential energy as the previus spring. b. Calculate the spring constant of this new spring The owner of the game wants to double the potential energy stored in this new spring. c. Calculate the compression of the spring needed in order to achieve this

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Chapter7: Work And Kinetic Energy
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Problem 93AP: A 7.0-kg box slides along a horizontal frictionless floor at 1.7 m/s and collides with a relatively...
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6. A 10 cm long spring, with a spring constant of 27 N/m, is used to reload the ball in a
pinball machine. The spring is compressed by 4.0 cm by a mechanism in the machine
and then let go.
a. Calculate the elastic potential energy stored in the spring
A new spring is fitted into the machine. It only needs to be compressed by 3.0 cm to store
the same amount of elastic potential energy as the previus spring.
b. Calculate the spring constant of this new spring
The owner of the game wants to double the potential energy stored in this new spring.
c. Calculate the compression of the spring needed in order to achieve this
Transcribed Image Text:6. A 10 cm long spring, with a spring constant of 27 N/m, is used to reload the ball in a pinball machine. The spring is compressed by 4.0 cm by a mechanism in the machine and then let go. a. Calculate the elastic potential energy stored in the spring A new spring is fitted into the machine. It only needs to be compressed by 3.0 cm to store the same amount of elastic potential energy as the previus spring. b. Calculate the spring constant of this new spring The owner of the game wants to double the potential energy stored in this new spring. c. Calculate the compression of the spring needed in order to achieve this
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