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At which of the following speeds will the sled have twice as much kinetic energy So the higher the bob is, the more potential energy that it possesses. The kinetic energy of the pendulum bob increases the most between positions a and c, as it moves from a point of maximum potential energy and minimum kinetic energy to a point of maximum kinetic energy at the lowest swing position.
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At point a, the object has maximum potential energy The amount of potential energy possessed by the pendulum bob is directly proportional to the bob's height The kinetic energy of the pendulum bob in figure 15−1 increases the most between locations a and b
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Post any question and get expert help quickly. This blending of concepts would lead us to conclude that the kinetic energy of the pendulum bob increases as the bob approaches the equilibrium position And the kinetic energy decreases as the bob moves further away from the equilibrium position. As the weight, or bob, moves through its arc, its mechanical energy is constantly converted between potential energy and kinetic energy
The kinetic energy increases as the potential energy decreases, and vice versa. If the string breaks, the particle cannot rise above the level of p irrespective of wherever the string breaks And statement 2 both vertical circular motion and projectile motion are processes conserving mechanical energy since tension does no work. The one value of total energy that the pendulum has throughout its oscillations is all potential energy at the endpoints of the oscillations, all kinetic energy at the midpoint, and a mix of potential and kinetic energy at locations in between.
