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#1 2016-09-07 11:52:50

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Plasmatic Magnetic Fields and SEPMAF's

Niestety na ten moment wszystko jest po angielsku, ale za jakiś czas może uda się to wszystko przetłumaczyć [dblpt])


Plasmatic Magnetic Fields and SEPMAF's
źródło: http://www.keshefoundation.org/new-hori … sepmafs-en
Our general hypothesis is that the creation of matter does not require excess temperature or extreme pressure. The characteristics of all matters can be reproduced by altering the fundamental plasmatic magnetic energy (PME) of Specific Entangled Plasmatic Magnetic Fields (SEPMAF), as seen in PME A and PME B in the image below. SEPMAF's are what we call today in physics the fundamental parts of particles and atoms. Protons, neutrons and electrons are collections of SEPMAF's where their magnetic fields have a specific structural magnetic entanglement, for example the double plasmatic magnetic structure shown in the first image 1A.

sepmaf_fields.jpg


Each type of SEPMAF has its own strength and magnetic structure. These basic plasmatic magnetic entanglements have a loose binding and not a fixed single magnetic field as in solid magnets. The loose plasmatic magnetic binding of a SEPMAF may be altered by the presence, characteristics and behavior of other SEPMAF’s (as in image 1B, the PMEs G & H within PME C), and can be affected by their plasmatic magnetic strength and structure, and their position and motion. The strength of SEPMAF’s of the same type can vary within certain limits, thus their structure is dynamic.

In other words, under the right conditions - such as minimal distance - these SEPMAF’s can influence each other in several ways, for instance: one or more SEPMAF's can have a change in the plasmatic magnetic field structure; one or both SEPMAF's can disentangle; SEPMAF's can change position relative to each other, or change position in the surrounding fields.

When SEPMAF's are in motion they will be influenced by the SEPMAF’s that they pass and enter into. Thus the "atom" is a combination of several types of SEPMAF's, and molecules are more complex SEPMAF's.

The physical interaction between SEPMAF's continually switches between states of balance and imbalance. To the observer this flux of magnetic change means that the properties of the atoms and of the molecules also change.

sepmaf_3_3.gif

Ciąg dalszy dostępny jest na stronie Fundacji Keshe
http://www.keshefoundation.org/new-hori … sepmafs-en

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