If it is moved upward, it's potential energy will increase. If it is moved lower, then it's potential energy will decrease.
The potential energy vs distance graph shows that potential energy decreases as distance increases. This indicates an inverse relationship between potential energy and distance - as distance between objects increases, the potential energy between them decreases.
The potential energy internuclear distance graph shows that potential energy decreases as internuclear distance increases. This indicates an inverse relationship between potential energy and internuclear distance.
Gravitational potential energy is related to an object's height above the ground. The higher an object is positioned, the greater its gravitational potential energy. It is a form of potential energy that results from an object's position within a gravitational field.
The electric potential energy of a system is directly related to the charge and the distance between the charges in the system. As the charges or the distance change, the electric potential energy of the system also changes accordingly.
Two forms of energy are gravitational potential energy and elastic potential energy. Gravitational potential energy is related to potential energy as it is stored energy due to an object's position in a gravitational field. Elastic potential energy is related to kinetic energy as it is stored energy due to the deformation of an elastic material, which can be released to create kinetic energy when the material returns to its original shape.
If it is moved upward, it's potential energy will increase. If it is moved lower, then it's potential energy will decrease.
The distance from the object providing a gravitational force.
The potential energy vs distance graph shows that potential energy decreases as distance increases. This indicates an inverse relationship between potential energy and distance - as distance between objects increases, the potential energy between them decreases.
The potential energy internuclear distance graph shows that potential energy decreases as internuclear distance increases. This indicates an inverse relationship between potential energy and internuclear distance.
The potential energy vs distance graph shows how the potential energy of the system changes as the distance between objects in the system changes. It reveals that there is a relationship between potential energy and distance, where potential energy increases as distance decreases and vice versa.
Gravitational potential energy is related to an object's height above the ground. The higher an object is positioned, the greater its gravitational potential energy. It is a form of potential energy that results from an object's position within a gravitational field.
The electric potential energy of a system is directly related to the charge and the distance between the charges in the system. As the charges or the distance change, the electric potential energy of the system also changes accordingly.
Kinetic and potential energy are a type of energy, not a measurement of distance.
Two forms of energy are gravitational potential energy and elastic potential energy. Gravitational potential energy is related to potential energy as it is stored energy due to an object's position in a gravitational field. Elastic potential energy is related to kinetic energy as it is stored energy due to the deformation of an elastic material, which can be released to create kinetic energy when the material returns to its original shape.
Potential and kinetic energy are related in that potential energy is stored energy that can be converted into kinetic energy, which is the energy of motion. When an object has potential energy, it has the potential to move and therefore has the potential to have kinetic energy.
Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.
No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.No. Energy related to motion is called kinetic energy; energy related to position is called potential energy.