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Gravitational potential energy depends only on the object\’s height above the Earth\’s surface.
Elastic potential energy is stored in an object when it is stretched or compressed.
The formula for gravitational potential energy is given by PE = mgh.
Elastic potential energy is measured in newtons (N).
Kinetic energy is the energy an object possesses due to its position.
The formula for kinetic energy is KE = 1/2 mv².
Gravitational potential energy increases when the mass of the object increases.
Elastic potential energy is related to the work done to deform an elastic object.
Kinetic energy depends only on the speed of an object.
An object on the Earth\’s surface has maximum gravitational potential energy.
Work is done when there is a change in an object\’s kinetic energy.
A spring stores elastic potential energy when it is at rest.
Gravitational potential energy is directly proportional to both mass and height.
The formula for elastic potential energy is EPE = 1/2 Fx.
Kinetic energy increases with the square of the object\’s velocity.
Gravitational potential energy decreases as the object moves closer to the Earth\’s surface.
Elastic potential energy depends on the force applied and the displacement from the equilibrium position.
An object at a higher position has less gravitational potential energy than an object at a lower position.
Work done on an object can increase its kinetic energy.
Elastic potential energy is zero when the object returns to its original shape.