Libmonster ID: UK-1503
Author(s) of the publication: Verner Andrei

Directional movement.

The property of the magnetic field of the neutral zone of a permanent magnet is the presence of a directed force of motion (magnetic self-motion) with a pronounced attraction, bordering on dipole repulsion, in relation to any main pole of another magnet (a magnetized ferromagnet by the main pole of a permanent magnet).

     When connecting opposite poles get motion the chain in two directions (figure 1).

 

The appearance of an electric current.

    The impact of the magnetic field neutral zone - The appearance of an electric current in the conducting loop, moving in a magnetic field of the neutral zone.

  We will insert a sharp iron core into the center of the copper coil. Perpendicular to the iron core we will touch the center of the plane with the neutral zone of the magnetic cube with axial magnetization and perform a reciprocating motion without an air gap, approximately 1/10 of the plane with the neutral zone - a double-charge magnetic field of a dipole sequence (magnetic self-motion) - a multidirectional electric current arises.

 

   In the center of the copper coil insert an iron core and a plane with a neutral zone of the magnetic cube with axial magnetization perpendicular to the iron core copper coil with a fixed air gap, commit linear motion parallel to the internal lines of force of the magnet, with the approach and removal of the magnetic cubes. (Compare the picture of the current appearance with iron permeability). Obtain a mechanical approach and the removal of the main opposite poles (arriving and departing the magnetic field) - currents in one direction, approximately 30%. In the plane with a neutral zone - 100% current of the opposite direction.    The same actions without the iron core - a picture of the physical properties of the magnetic field is the same (figure 3).

 

Magnitnoe-samonvijenie.4.jpg

Obtaining electric current.

  To compare the production of electric current in front of a copper coil with an iron core, we will install a rotating round platform with an electric drive and alternately compare the production of electric current between the main pole of a permanent magnet (electromagnetic induction) and a plane with a neutral zone (magnetic self-motion), installing a magnetic cube on a platform with a fixed air gap between the magnet and the iron core of the copper coil, with the same intensity of action, we will get electromagnetic induction - 60% AC, magnetic self-motion - 100% AC.


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Verner Andrei, The magnetic field of the neutral zone. // London: British Digital Library (ELIBRARY.ORG.UK). Updated: 10.10.2024. URL: https://elibrary.org.uk/m/articles/view/The-magnetic-field-of-the-neutral-zone (date of access: 26.03.2025).

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