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The Podding Effect
within the
Quantum Cubic Compression Model
that weakens the
Gravitation and Magnetism
Field Strength
Abstract:
This hypothesis maintains that there is a "podding" effect
within the quantum cubic compression model of quantum mass
that affects the linear growth of warping spacetime
(gravitation) or magnetism fields as the quantum mass is
compressed from a spherical to a cubic form under conditions
of ultra high pressures.
Podding? What's that?
Well, first let me explain my use of the word, "podding".
As the boundary layer of quantum mass is compressed under
the effect of ultra high pressures, the boundary layer
slowly changes form from a spherical shape to a cubic shape
as more and more pressure is applied.
Effective additive field linking is then along the four main
diagonals of each quantum "cube" with respect to one
another. "Podding" occurs at the rounded corners of the
partially compressed quantum cube during the intermediate
stages of compression when/during the time when the cubes
are only partially to almost completely compressed.
Restating: During this transition, the BOUNDARY of the
quantum 'sphere' is slowly squeezed into a cube shape due to
the ultra high pressures.
Now if we look at the corners of the quantum mass in some
partially compressed cubes in some intermediate state, we
can see that the very corners of the cubes, representing the
boundary edges of the mass, are still some distant from one
another. This corner to corner distance of the quantum
energy resonance, decreases with increasing pressure and
thereby increases the effectiveness of the 'polar' field
linkage that is responsible for altering warped spacetime.
If we look at the impact energy density plots of the
resonance of the polar field at the corners of the partially
rounded cubes over an infinitesimal delta time, we can see
that the linkage PODDING area (which sort of takes the shape
of a lily pod, hence its name) shrinks or 'tightens up' as
the cube goes to a sharper corner under more pressure. That
is the plot 'dots' get closer together and the plot gets
darker and smaller and ever more focused as the corners of
the compressed quantum cube get sharper.
The podding area is really just a tentative circular target
resonant reversal area at the corners of semi rounded cube
which has now started to restrict the resonance of the
sphere into the main diagonals of the cubic boundary area.
That is, along the main diagonals of the quantum cube.
Anyhow, that is the proposed terminology for the proposed
effect of the proposed hypothesis. If you have the feeling
that you are standing solidly in mid-air with respect to all
of this, you are absolutely correct.
Okay, end of podding definition...
Now, let me start all over again.
The Podding Effect within the Cubic Compression Model
Let me introduce here a mechanical concept within the cubic
compression model of the quantum particle (resonance) that
our joseph_sixpack, for want of a better word, calls
"podding". i am sure there must be a better word for it but
a joe doesn't know what it is. Wait a minute! what's this
third person addressing stuff all about? Is someone talking
through me? Oh well then... whatever..., let's see what he
has to say...
A Gravitational aside
It is generally accepted that the gravitational attraction
between two masses is dependent upon their distances apart.
Or perhaps more precisely, inversely proportional to the
square of their distances apart. The intermediate podding
effect of the quantum mass has the net effect of increasing
the distance between the quantum additive linking polar
elements and therefore reducing the effective "polar"
linkage between the "cubes" and thereby reducing the
spacetime warpage or gauss if a magnetar.
Now, in our cubic compression model of the quantum particle
that causes and is responsible for the GRAVITATIONAL or
MAGNETIC field as set forth in the "Snot Standard Model" the
resonance undergoes distortion and and is focused (flows) in
the main diagonal as it is forced into the four main
diagonals of the cube as more and more pressure is applied
and becomes more and more cubic.
As the particle undergoes a change in effective form from
spherical to cubic form due to increasing pressures, it may
do so gradually until it does a final quantum jump, once it
is passed its initial theoretical collapse and altered its
prior tetrahedral "packing fraction" to a cubic one.
Now at this point, during its journey towards final cubic
compression, what energies may be released, if any, are/is
anybodies call. My vote is nothing is released except
perhaps a gravity wave announcing higher spacetime warpage
as the particles get closer together after the final cubic
compression, BUT, that is just a guess, substantial energies
may in fact, be released. Right now, as a hypothesis, it is
anybody's guess.
Quantum mass under even 'normal' pressures probably isn't
arranged in a cubic lattice pattern form. Normal packing
fractions would dictate an initial tetrahedral packing
fraction as the spherical boundary areas settle into one
another. Only when compression has generated near cubic
shapes can corner alighment "slip" into a linkage of maximum
effect or strength. Now when ongoing and gravitational
readjustments due to pressure increases, a gravity wave may
result and be propagated reflecting a sudden net increase in
spacetime warpage. In fact, there may even be a relation
between Gamma Ray Bursts (GMR's) and gravity waves with one
or the other, unfortunately arriving a different times due
to different energy propagation, the more energetic
traveling a straighter path being less subject to dimples in
spacetime due to its higher energies. But, all this
speculation is a far call for a joseph_sixpack.
It is time for real scientists now.
Effective pressures also might be dynamic and somewhat
slightly changing over a delta time period. The resonant
waveform that generates the respective field becomes more
linearly targeted and geometrically constrained as the cubic
form becomes more pronounced.
So in summation...
Midway between the spherical and cubic form we can say that
"Podding" starts to occur to the resonance. The waveform
generates its additive polar fields in a more blunted
fashion in an early pressure situation that reflects the
effective distance between the additive polar "ends" of the
resonance thereby manifesting a lesser quantum additive
value of the field generating properties of the collective
resonances of the mass.
Rounded corners
That is to say, the squeezed cubic resonances (dice) are not
perfectly cubic but have highly rounded corners with the
resonance stopping short of making a perfect linking contact
with the other quantum particle and "podding against the
corners of the boundaries of the near cube.
This 'podding' effect, the theory goes, would be true for
any FIELD GENERATING PARTICLE undergoing compression to a
cubic form.
In particular, the two we are most familiar with,
gravitation and magnetism are subject to podding.
Tin Can Collectors
Huge gaussian values have been detected within neutron stars
which would have huge pressures and of course nowadays we
all know about masses with gravity so great that they
interdict even radiation from escaping their surface.
So What?
All this "podding" speculation means is that the
gravitational compression of the particle resonance
boundaries is not linear in its field generation effect
and therefore would not graph out linearly with respect
to the increasing pressures verses increasing field
strengths coming from the ever additive solar masses.
A minor question
Of course, a main issue is whether the cubic compression of
the quantum resonance (particle) is a valid model at all
with respect to warping spacetime.
For a joe, that is an unanswerable question. We may not be
able to prove what we dream up. Wait a minute! Who's we?
is there more than one of me? or is that just a reference to
scientists generically? oh well...
So i leave it to the reader to come up with alternate
explanations that can explain the field effects of magnetars
and black holes. That is, the resonant particles
(waveforms) that generate ultra high magnetism and
gravitation under ultra high pressures.
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