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the passage of Planet X creates.

When 32 degrees below the Ecliptic and rising to pierce the Ecliptic between the Earth and Sun,

magnetic particles from Planet X add to the particle flow moving into the Earth's S Pole. This causes

the ionized particles which normally cluster at the S Pole to bobble about on one side of the plate.

When rising such that the angle between the Earth's S Pole and Planet X's N Pole is sharper, and

Planet X closer, the particle flow of magnetic particles counters and blocks the flow from N to S within

the Earth's field, creating a larger flow inbound at the S Pole on the opposite side of the Earth. This

causes those ionized particles to switch sides, to avoid the heavy traffic lane. The point where this

bobble was equalized, normal for Earth, was May 31, the dead calm day.

The N Pole of Earth now increasingly has a bobble of ionized particles, also away from the heavy

traffic land. These ionized particles are now poised to rush along the Atlantic Rift, when Planet X

reaches a near point, creating, suddenly, a giant magnet along the Rift, which is gripped to stop

rotation.

ZetaTalk™, written June 2, 2003

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Magma Suring Switch, Zetas Explain

http://www.zetatalk2.com/index/zeta1.htm[2/5/2012 11:54:36 AM]

ZetaTalk: 3rd Magnet

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ZetaTalk: 3rd Magnet

written on June 8, 2003

What stress does the Earth experience when rotation slows and stops? We have mentioned that the core wants to

continue to turn, the crust, which has been grabbed by the near presence of Planet X at the Atlantic Rift point, resists,

slowing and stopping, and that this conflict causes the Earth to moan. During stoppage, and to a lesser degree during

dramatic slowing, the Earth’s magnetic field continues as before but exhibits distress. Normally, the magnetic field is a

particle flow emerging from the N. Pole and circling round to the S. Pole. The presence of Planet X blocks this flow on

that side of the Earth, such that the particles shift to flow more strongly on the Far Side, away from Planet X. When Planet X is close enough to cause agitation and spilling over of the ionized particles that normally group at the poles or

around the highly magnetized core of the Earth, these particles flow Along Under the crust of the Earth until they find themselves captured at the Atlantic Rift. This creates a conflict within the Earth’s magnetic field, as it now has yet

another magnet to deal with.

1. the Earth itself

2. Planet X which is aligned with the Earth but moving gradually past the Earth as it approaches passage

3. the Atlantic Rift, aligned loosely with the Earth, but due to the bulge of the Equator, not strictly aligned.

The distress a highly magnetized Atlantic Rift has on the surging magma is to

create an irregular outgo at the N. Pole, where the particles flowing through

the core are going straight up and out, but the particles that flowed along the

Atlantic Rift are emerging at an angle. Thus, the point where this angular

outflow emergence occurs is agitated, due to ionized particles under the crust

surface in rapid motion. This is an indication that the Atlantic Rift has

become magnetized, has gathered the ionized particles that escaped from

their normal domain near the poles or surrounding the core, and that rotation

slowing can be anticipated shortly.

http://www.zetatalk2.com/index/zeta3.htm[2/5/2012 11:54:37 AM]

ZetaTalk: S. Pole Tug

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ZetaTalk: S. Pole Tug

written June 11, 2003

On May 27, the SOHO showed a heat presence requiring Doctoring on the right side. Bear in mind that due to the tilt of the Earth as mid-Summer is approached, the upper right quadrant on the SOHO is more akin to the line of the

Ecliptic than the middle, as the SOHO satellite, an Earth satellite, is essentially tilted 23 degrees along with the Earth.

Surging Magma was evident at both poles by May 30, resulting in a disbursal of magnetized ions normally gathered under the poles on June 5 such that these ions would be captured by the Atlantic Rift. A 3rd Magnet then appeared along the Atlantic Rift on June 8, a bowed magnet with the N. Pole emerging near the Siberian Isl. What has changed

by June 10-11 for that to appear to go quiescent, with a return to agitation at the S. Pole? It should be noted that this

change goes in step with a raised position of Planet X to the upper left quadrant on June 9, as shown on the

SOHO/EIT.

If Planet X, known to be rising rapidly toward the Ecliptic at this time, has essentially reached the Ecliptic, what effect would it have, as the giant magnet it is, on the hapless Earth? Where Formerly during its rise to the Ecliptic, it either augmented the flow of magnetic particles into the Earth’s S. Pole, or blocked the flow of magnetic particles on the

Earth’s side facing the Sun and Planet X so that the backside was overused, it now it is in a position to cause distress

on the S. Pole which wants to align with the N. Pole of Planet X. Since the magnetic alignment of both the Earth and

Planet X are the same, as is Mercury, why would Planet X be causing this distress when close to the Ecliptic, where

Mercury does not? Planet X is a larger magnet than Mercury, and is swinging closer to Earth than Mercury, but the

key difference is the angle of approach.

Magnets can line up side by side if enough

distance is allowed between then for a field

to develop, such that the particle flow can

move out from the N. Pole and around to the

S. Pole without impediment.

Where this

field cannot

be established,

due to

crowding, the

flow will

move in and

out from the

dominant

magnet in the

area, the lesser

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ZetaTalk: S. Pole Tug

magnets

trying to

position

themselves to

facilitate this

flow.

Where the lesser magnets cannot position

themselves to facilitate this, due to being

held in place for some reason, the magnetic

particle flow remains distressed, this distress

primarily visited upon the lesser magnet.

The Earth as we have mentioned had many allegiance to continue rotation, continue to maintain its present tilt, and the

core is still listening primarily to the Sun for its magnetic orientation.

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