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Q: Do potential energy and kinetic energy rely on each other?
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How is potential energy similar to kinetic energy?

Mass Kinetic energy = 1/2 · mass ∙velocity2 Potential energy = mass ∙ (acceleration due to gravity) ∙ height Mass is common to both Kinetic energy is the energy due to motion. The faster an object (mass) is moving; the more Kinetic energy is has. Potential energy is the energy due to position. The higher an object (mass) is off the earth's surface, the more Potential energy it has.fcfytrdddrdrdrdrdrdrdrdrdrdrdrdrdrdrdrdrdrtdjgrfxnzsdfcxzdfgv dorkk


What are the two kinds of energy that all particles have?

isn't it like potential energy or kinetic energy? something like that All matter has mass energy. This energy is given by Einstein's formula E = mc2


What is the relationship between potential energy and thermal energy?

Hold a rock in the air ... it has potential energy. Drop it ... the potential energy will be converted into kinetic energy. It hits the ground and stop ... the kinetic energy will be converted into thermal energy. Note that the total energy in each case is the same.


What is the two main forms of energy?

Kinetic energy (energy of motion) and potential energy (stored energy) A ball at the top of a building getting ready to be dropped has potential energy, but a ball falling has kinetic energy If the ball is at the top of the building, it has 100% potential and 0% kinetic and when it is halfway from top to bottom and falling it has 50% of each


Does gasoline have kinetic or potential energy?

Both. Temperature is a measure of average kinetic energy per particle and everything has at least some. Its potential energy is stored in the chemical bonds (and its nucleus) within each molecule (and atom).

Related questions

How are potential kinetic energy different from each other?

Difference is that kinetic energy is the energy of motion and potential is stored energy.


How do the forms of potential energy kinetic energy non-mechanical also mechanical energy related to each other?

Mechanical energy comprises of both potential and kinetic energy. For example- Flying kite


Potential and kinetic energy?

Kinetic energy is energy that is moving or in motion. Potential energy is energy that is still but has potential to move. Both energy's can switch back and forth from each other. Energy is never lost, it just changes forms. Hope this helps!


How is energy transferred during a pendulum swing?

A swinging pendulum has potential energy at each end of it's travel (when it stops momentarily) This energy is converted to kinetic energy as it swings down and back to potential energy as it swings up the other way.


How is potential energy similar to kinetic energy?

Mass Kinetic energy = 1/2 · mass ∙velocity2 Potential energy = mass ∙ (acceleration due to gravity) ∙ height Mass is common to both Kinetic energy is the energy due to motion. The faster an object (mass) is moving; the more Kinetic energy is has. Potential energy is the energy due to position. The higher an object (mass) is off the earth's surface, the more Potential energy it has.fcfytrdddrdrdrdrdrdrdrdrdrdrdrdrdrdrdrdrdrtdjgrfxnzsdfcxzdfgv dorkk


What is the two forms of energy?

Kinetic energy (energy of motion) and potential energy (stored energy) A ball at the top of a building getting ready to be dropped has potential energy, but a ball falling has kinetic energy If the ball is at the top of the building, it has 100% potential and 0% kinetic and when it is halfway from top to bottom and falling it has 50% of each


What are the two kinds of energy that all particles have?

isn't it like potential energy or kinetic energy? something like that All matter has mass energy. This energy is given by Einstein's formula E = mc2


What is the relationship between potential energy and thermal energy?

Hold a rock in the air ... it has potential energy. Drop it ... the potential energy will be converted into kinetic energy. It hits the ground and stop ... the kinetic energy will be converted into thermal energy. Note that the total energy in each case is the same.


A pendulum is designed to transfer potential gravitational energy into what?

When the bob of the pendulum while moving stops at one, its Kinetic energy changes completely into potential energy and when it starts its motion again, the potential energy changes to the kinetic energy


How Kinetic Energy is related to Potential Energy?

Potential and kinetic energy are sort of like inverses. They are not technically inverses strictly speaking in the mathematical sense. Potential energy can become kinetic energy, and vice versa. Keep in mind the mathematical concept of the change in each. (change in) Potential energy= (change in) Kinetic energy. For example, let's say that we had a mass of 1 kg suspended 1 metre above the ground. If we drop it, its kinetic energy by the time it hits the ground is (1/2)mv2 . (1/2)(1kg)(9.82 ) (m2 ) or 48.02J It's potential energy at this point is 0, because it is on the ground and is not suspended in the air. Potential and kinetic energies act as inverses because before the mass was dropped its kinetic energy was 0 and its potential energy was 48.02J. By the time the mass had dropped to the ground however, the potential energy had all transferred into kinetic energy.


When pendulum stops has the kinetic energy changed to potential energy?

As the pendulum stops swinging, its maximum kinetic energy (the initial energy at the beginning of the swing) decreases, and its potential energy increases. Once the pendulum stops, it will have zero kinetic energy and maximum potential energy.


Does a water fall have kinetic energy?

Yes, it does. Kinetic energy is energy in motion. If you have a waterfall, the energy within it is constantly being moved. If it were perhaps a waterfall that was frozen over, then it would not have kinetic energy; it would have potential energy. Relative to the pool at the bottom, the water at the top has potential energy until it reaches the edge. After it spills over, each kilogram of water loses 9.8 joules of potential energy and gains 9.8 joules of kinetic energy for every meter it falls. When it reaches the bottom, all of the potential energy it had at the top has been converted to kinetic energy.