15.7
Consider a car moving over a bumpy road. Here, the suspension of the car acts like a spring connecting the mass of the car to the wheels.
During its motion, the spring compresses and expands, executing simple harmonic motion.
Suppose the car bounces with a certain amplitude; what is its maximum velocity, and how does its total energy change if it is halfway between its initial and equilibrium positions?
The total energy in simple harmonic motion remains conserved. Rearrangement of terms gives the velocity at any position during the motion.
The maximum velocity occurs when the car's spring passes through the equilibrium position. On substituting the known quantities, the maximum velocity is obtained. The total energy at the equilibrium position is then obtained by substituting the known and calculated quantities.
When the car's spring moves from maximum to half amplitude, the velocity is considered negative. The total energy is calculated by substituting the velocity with other known quantities.
In both cases, the total energy of simple harmonic motion is the same.
Eenvoudige harmonische beweging (SHM) is een soort periodieke beweging in tijd en positie, waarbij een object heen en weer oscilleert rond een evenwic…
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