Convert the height to meters, then use the formula: PE = mgh (gravity = 9.8)
Yes. When a hammer is raised above the ground, it gains gravitational potential energy due to its position in the Earth's gravitational field. This potential energy can be converted into kinetic energy as the hammer falls.
Basically just about ANYTHING that is raised has gravitational potential energy.
Objects at a height above the ground such as a book on a shelf, a pendulum at its peak, and water in a raised reservoir are examples of stores of gravitational potential energy.
The gravitational potential energy increases when the center of gravity of an object is raised, as the object has been lifted against gravity. The potential energy is directly proportional to the height of the center of gravity above a reference point, such as the ground.
The two main properties that determine an object's gravitational potential energy are its mass and its height above a reference point, such as the ground. The gravitational potential energy of an object increases with its mass and how high it is raised above the reference point.
Yes. When a hammer is raised above the ground, it gains gravitational potential energy due to its position in the Earth's gravitational field. This potential energy can be converted into kinetic energy as the hammer falls.
Basically just about ANYTHING that is raised has gravitational potential energy.
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Let's take an example: gravitational potential energy. An object has more potential energy if it is raised to a higher position. The energy comes from whatever raised it up, although it is also possible (as in the case of meteorites) that the object was never on the ground in the first place.Let's take an example: gravitational potential energy. An object has more potential energy if it is raised to a higher position. The energy comes from whatever raised it up, although it is also possible (as in the case of meteorites) that the object was never on the ground in the first place.Let's take an example: gravitational potential energy. An object has more potential energy if it is raised to a higher position. The energy comes from whatever raised it up, although it is also possible (as in the case of meteorites) that the object was never on the ground in the first place.Let's take an example: gravitational potential energy. An object has more potential energy if it is raised to a higher position. The energy comes from whatever raised it up, although it is also possible (as in the case of meteorites) that the object was never on the ground in the first place.
Objects at a height above the ground such as a book on a shelf, a pendulum at its peak, and water in a raised reservoir are examples of stores of gravitational potential energy.
The gravitational potential energy increases when the center of gravity of an object is raised, as the object has been lifted against gravity. The potential energy is directly proportional to the height of the center of gravity above a reference point, such as the ground.
Gravitational potential energy is a type of potential energy that is associated with an object's position in a gravitational field. It represents the energy stored in an object when it is raised to a certain height above the ground.
The two main properties that determine an object's gravitational potential energy are its mass and its height above a reference point, such as the ground. The gravitational potential energy of an object increases with its mass and how high it is raised above the reference point.
The increase in potential energy is caused by the elevation or height of an object. As an object is raised higher above the ground, its potential energy increases due to the gravitational force acting on it.
The raised object has gravitational potential energy stored in it due to its position above the ground. This energy is related to the object's height and mass. When the object is released and falls, this potential energy is converted into kinetic energy as it moves downward.
The factors that determine gravitational potential energy are the object's mass, the acceleration due to gravity, and the height the object is raised to. Gravitational potential energy is directly proportional to the mass of the object and the height it is raised, and is also affected by the strength of the gravitational field.
The potential energy stored in raised objects is gravitational potential energy. This form of energy is due to the object's position in a gravitational field and its ability to do work when it falls or moves to a lower position.