HOW CAN WE UNDERSTAND THE EXISTENCE OF EXTRA MAGNETIC ENERGY FROM MAGNETS WITH THE SIMPLEST LOGIC ?



 HOW CAN WE UNDERSTAND  THE EXISTENCE OF EXTRA MAGNETIC ENERGY FROM MAGNETS  WITH THE SIMPLEST LOGIC?


 The way the extra magnetic energy is generated can first be reduced to a simple observation as follows.  When two permanent magnets, which are left opposite each other with a distance of  Here, as a distance is taken in the direction of the force, a mutual work is done and the potential energies assumed to have relative to each other through energy conversion are spent to increase the kinetic energy of the permanent magnets until the moment of collision and to overcome forces such as friction that want to prevent movement.  It is generally accepted that the source of the energy here is not provided by permanent magnets, but from the outside by placing two permanent magnets opposite each other in a way that creates a potential relative to each other.  Here, both magnets will contribute equal energy to the system with their final potential.  Now, let's replace one of the permanent magnets with a movable electromagnet of the same size and pole strength, consisting only of coil windings, with a distance x between them.  Since there is no force or movement until the moment we apply electricity to the electromagnet, a similar concept of potential energy cannot be mentioned.  When an electric current is given to the electromagnet in a way that attracts the opposite one, both of them will travel a total distance of  The potential energy that both permanent magnets, which we have just given as an example, have due to their distance from the opposite magnet, occurs here again for the permanent magnet, because the electromagnetic waves coming from the electromagnet and attracting it will be like those coming from the opposite permanent magnet before, but this time differently, it is necessary to gain this potential. The magnetic attraction force of the permanent magnet, which exists without the need to consume energy other than electrical energy, also plays a role, to a small extent.  If the direction of the current given to the electromagnet is changed when they touch each other, this time they repel each other and gain kinetic energy, similar to the potential energy of adjacent permanent magnets whose poles are left to repel each other.  The contribution of neodymium permanent magnets and electromagnets to the final energy state they gain after energy conversion can only be as much as they lose from the systems that provide their own energy.  The energy lost by the pathways that provide magnetic energy in permanent magnets is much less than that lost through electric current in electromagnets.  For this reason, the extra magnetic energy added to the system by permanent magnets is low in this amount and its presence can be overlooked in ordinary measurements.

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