THIS IS THE ABSTRACT OF THE PREPARED ARTICLE - IT CAN BE PROVED BY ABAY ELECTRIC MOTOR THAT LIMITED, ADDITIONAL ENERGY CAN BE ADDED TO THE EXTERNAL SYSTEM, WHICH CAN BE CALLED FREE MAGNETIC ENERGY IN MAGNETS
Magnetic
Energy Exists From Neodymium Magnets To Increase The Total Amount Of Obsarvable
Energy During Their Interaction With Electromagnets
Abstract
Neodymium
magnets release additional magnetic energy as they interact with electromagnets
in motion, such as in some machines such as electric motors. This extra
magnetic energy is spent to increase the kinetic energy of the dynamic system including
the permanent magnets.
After
a sensitive experiment designed to measure the amount of energy consumed and
released when the neodymium magnet and the electromagnet attract each other for
a short time, it was able to observed that a small amount of additional energy
was released from the neodymium magnets. In summary in this experiment more
energy total is released than the given electrical energy. Since, according to
the laws of thermodynamics, energy cannot be created from nothing and no
machine in a closed system can have more than one hundred percent efficiency,
the extra energy released is due to the magnetic energy of the neodymium
permanent magnet used in the experiment and this energy cannot be defined as
potential energy because of the continuously observed excess energy ability to
be created without decreasing, it is understood that there is a source that
provides extra energy here and this is definitely provided by the magnetic
energy of the permanent magnet and the sources that create this magnetic
energy. The amount of this extra energy is proportional to the change in the
interaction strenght between the permanent magnet and the electromagnet and can
be calculated in this way. It is concluded that due to the formation of
magnetic energy from the permanent magnet used in our experiment, which
provides plus energy that is constantly added to the system observably in the
superatomic dimension during the interaction, there is an equal decrease and
consumption of this energy in the energy pathways in the subatomic dimension
that provide the magnetic energy generation of neodymium permanent magnets. A
similar situation actually occurs in electric motors which have neodymium permanent
magnets in their structure too, but it cannot be observed in routine designs
because much more calculable energy cannot be gained than the supplied
electrical energy when losses that cannot be measured exactly, such as magnetic
vibration loss, are excluded.
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