Light particles, thus, are immense in their numbers, and the various wave forms with resulting color signature
recognized by a retina only one example of the many. Do these light particles like to flow with one another, being
attracted to one another in a similar manner to the electro-magnetic particles? Obviously.
And as we have described, they flow not in a straight line, not in a wave form, but in a twisted cable form. Like the
Moons of Planet X, they swirl about each other in a double helix pattern, neither escaping or bonding, in perpetual motion. These helix strands likewise coil around
distance the strands need from each other. Like electrons that chase but do not
are likewise always in motion and cannot stand crowding but likewise desire to clump, this is a dance that never ends,
perhaps by God’s design. Where electrons can be caught and reside around the nucleus of an atom, and magnetons are
normally humming about the nucleus of an atom, the flow of light particles is an
within and around a nucleus. They emerge when this nucleus is flooded with particles and are
crowding, due to pressure which crowds them or the application of heat which is in and of itself a particle flow, or the
introduction of some bonded atoms that act as a catalyst for change. Light can be produced by friction, heat, emerges
during fire, or by chemical mix, as man knows.
When the twisted coil is on the move it, as a
explosion of particle crowding they were escaping. The direction of the light ray. When
this is considered by man to be white light, all color spectrums included, as the colors emerge when this white light is
separated into its parts. The helix coils have
They are moving away from, and back toward, the pairing particle in their coil. Depending upon the particle, this coil
is tight or loose, with a wide wave length or short, and involves many other coils tightly attracted to it or few. When
encountering other matter, these particle pairs find themselves in a marital crisis. One of the pair wants to have an
affair with the other matter encountered, lingering, while the other partner
close, too crowded. Thus, the particle lingering forces the partner to
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ZetaTalk: Light Particle Bonds
original expulsion from some comfortable atom into a light ray direction. The exiting particle of the pair leaves,
likewise, in a
Thus, white light entering a prism of glass finds that the
expels its partner first. These particles having peeled off, the
coils of those light particles that are resistant to attraction, by being so tightly bound to the coils, and resist the
flirtations of nearby particles inherent in the glass. Some material simply absorbs the light rays by preventing them
from leaving, an affair that has become a new marriage of sorts. Some material is so attractive that the lingering
partner and expulsion proceeds at an almost violent pace, considered a complete reflection surface by man. When light
coils pass over a gravity giant such as a planet, it is not the long distance call of a lover they are listening to when they
curve
from the other parts of the larger intermeshed coil. This separation is not violent or sudden, as adjustments are made
during the bumping process so the coils of those particles wanting to pull along with the flow of gravity eventually
find themselves outside of the larger coil, and free to move in independent helix coils. Thus where white light, or light
in color spectrums not susceptible to gravity particle attraction, move forward in their straight line path, the red
spectrum light susceptible to gravity pulls toward the gravity particles drifting back to their gravity sink, and are
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ZetaTalk: Red Shift
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Regarding the red color that the 12th Planet emits. This is due to the
that source. It is a particle, a light particle, operating at a certain frequency. That's all. Leaving or approaching, the
same. The variation of light you note on leaving or coming pertains to accumulation of particles, as on the approach
there is a tendency for an accumulation of certain particles, which bounce around and create a dominance. Upon
leaving, the opposite effect is noted.
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