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When a vibrating body is displaced from its mean position, restoring forces act to bring it back to equilibrium. However, if the amplitude of vibration is large enough, the body may overshoot the mean position due to the inertia of its motion, causing it to oscillate around the equilibrium point.

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Q: Why does the vibrating body move away from mean position?
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What will be the trajectory of a vibrating simple pendulum after it has suddenly detached from the thread while passing through its mean position?

After detaching from the thread at its mean position, the pendulum will continue along a straight line tangential to the circular path it was following at the moment of detachment. This is due to the inertia of its velocity at that point. The motion will be governed by the laws of motion and will not return to its original path.


What does kinesthic mean?

"Kinesthetic" refers to the sense of movement and body position. It involves being aware of the position and movement of your body parts without relying on sight or sound. This sense helps in coordinating movements and maintaining balance.


What do you mean by force of vibration?

Force of vibration refers to the strength or magnitude of the oscillatory motion produced by a vibrating object. It is a measure of the intensity of the vibration, representing the energy transmitted through the vibrating medium.


What does aducting mean?

Aducting usually refers to the process of moving a body part closer to the midline of the body. It is the opposite of abducting, which involves moving a body part away from the midline.


What does hertz mean on a vibrating machine say 18hz compared to 30 hz?

The hertz (Hz) value on a vibrating machine indicates the frequency at which the machine vibrates. A machine vibrating at 18 Hz will vibrate 18 times per second, while a machine vibrating at 30 Hz will vibrate 30 times per second. Generally, higher hertz values indicate a faster and more intense vibration.

Related questions

What will be the trajectory of the bob of a vibrating simple pendulum after it has suddenly detached from the thread while passing through its mean position?

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What does it mean when your xbox360 is vibrating?

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What will be the trajectory of a vibrating simple pendulum after it has suddenly detached from the thread while passing through its mean position?

After detaching from the thread at its mean position, the pendulum will continue along a straight line tangential to the circular path it was following at the moment of detachment. This is due to the inertia of its velocity at that point. The motion will be governed by the laws of motion and will not return to its original path.


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