Q.What are the two basic characteristics of a simple harmonic motion?
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Start your 14-day free trial to unlock the full solution →Simple harmonic motion is defined by two characteristics that are cause and effect: (1) the restoring force (and hence acceleration) is directly proportional to the displacement and always directed toward the equilibrium position -- , -- and (2) as a direct consequence, the resulting motion is periodic and sinusoidal in time, .
Why these two, together
SHM appears everywhere -- springs, pendulums (for small angles), vibrating atoms -- and what makes it "simple" and "harmonic" is a single dynamical rule that then forces a specific kind of motion. The first characteristic causes the second.
Characteristic 1: Restoring force proportional to displacement
Whenever the oscillating body is displaced by from its equilibrium position, a restoring force acts on it, pulling it back:
Here is a positive constant, and the minus sign says the force always points opposite to the displacement. By Newton's second law:
So equivalently: the acceleration is directly proportional to displacement and directed opposite to it.
Characteristic 2: The resulting motion is periodic and sinusoidal
Solving (obtained directly from Characteristic 1) always gives a sine or cosine solution:
This means the motion repeats exactly after a time period -- it is periodic -- and traces a smooth sine/cosine curve in time -- it is sinusoidal. The period depends only on the system's properties ( and ), not on the amplitude . …
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