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two type so energy associated with simple harmonic motion
kinetic energy and potential energy of the spring
potential energy is
stored energy
kinetic energy is
active
object under SHM is at its minimum speed when displacement from equilibrium point is
maximum
object under SHM is at its maximum speed when displacement from equilibrium point is
zero
object under SHM is at its maximum acceleration when displacement from equilibrium point is
maximum
object under SHM is at its minimum force when displacement from equilibrium point is
zero
object under SHM is at its maximum force when displacement from equilibrium point is
maximized
negative value in f=-kx
restoring force
k in f=-kx
spring constant p
period + frequency =
1
period of simple harmonic oscillator is independent of its
amplitude
amplitude of the motion of an object undergoing SHM
maximum displacement from equilibrium position
ampltiude of SHM oscillator does not affect
frequency
if amplitude is doubled then
maximum speed
SHM object in straight line will not have
SHM object attached to horizontal spring has PE
varying based on displacement from equilibrium
object under SHM is at its maximum acceleration when displacement from equilibrium point is
zero