What are the characteristics of simple motion?
Answer
629.4k+ views
Hint: The basic properties and conditions which require for a body to exhibit S.H.M are the characteristics of simple harmonic motions.
Complete step by step answer:
As we know the Simple Harmonic (SHM) is a motion along a straight line. The Body moves back and forth with respect to a mean position. The Body Returns to a given point in the path with the same velocity after regular intervals of time.
There are basic conditions and characteristics for a body to exhibit SHM.
1. A Restoring force must act on the Body.
2. Body must have acceleration in a direction opposite to the displacement and the acceleration must be directly proportional to displacement.
3. The system must have inertia (mass).
4. SHM is a type of oscillatory motion.
5. It is a particle case of periodic motion.
6. It can be represented by a simple sine or cosine function.
Note:
In mechanics and physics, simple Harmonic motion is a special type or periodic motion where the restoring force on the moving object is directly proportional to the object's displacement magnitude and acts towards the object's equilibrium position.
Complete step by step answer:
As we know the Simple Harmonic (SHM) is a motion along a straight line. The Body moves back and forth with respect to a mean position. The Body Returns to a given point in the path with the same velocity after regular intervals of time.
There are basic conditions and characteristics for a body to exhibit SHM.
1. A Restoring force must act on the Body.
2. Body must have acceleration in a direction opposite to the displacement and the acceleration must be directly proportional to displacement.
3. The system must have inertia (mass).
4. SHM is a type of oscillatory motion.
5. It is a particle case of periodic motion.
6. It can be represented by a simple sine or cosine function.
Note:
In mechanics and physics, simple Harmonic motion is a special type or periodic motion where the restoring force on the moving object is directly proportional to the object's displacement magnitude and acts towards the object's equilibrium position.
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