Energy in simple harmonic motion, kinetic and potential energies, simple pendulum and its time period - Online Test

30:00
1. In Simple Harmonic Motion (SHM), what is the relationship between kinetic energy (KE) and potential energy (PE) at the extreme positions of the oscillation?
2. When an object is at the mean position in SHM, what is the state of its kinetic energy and potential energy?
3. For a system undergoing SHM, which of the following statements about the total mechanical energy is correct?
4. The potential energy of a particle executing SHM is given by U = (1/2)kx^2, where k is the spring constant and x is the displacement from the mean position. What is the nature of this potential energy?
5. If the amplitude of a SHM is doubled, how does the total energy of the system change?
6. For a simple pendulum, the time period (T) is approximately 2.0 seconds. If the length of the pendulum is increased by a factor of 4, what will be the new time period?
7. The time period of a simple pendulum depends on which of the following quantities?
8. What is the formula for the time period (T) of a simple pendulum of length L in a location with acceleration due to gravity g?
9. If a simple pendulum is taken to the Moon where the acceleration due to gravity is approximately 1/6th of that on Earth, how will its time period change?
10. The kinetic energy of a particle in SHM is maximum when the particle is at:

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