to bottom   INTRODUCING BI-LATERAL SYMMETRY      








Here is an
object which goes
around lecturing the staff
on how to make bi-polar self contained
symmetric fluid dynamic formations. The cotter
pin ring is twisted one way as it tangs into the cigar (above)
and the other way twisting into the cigar (below). This alone
is your lesson for the day. Everything celestial, all
objects cosmic, have a bi-lateral principle in
their form. Whoever figures out why will
surely get the great prize which
everyone worldwide jokes
about until they
win it, to
then go
forth
explaining
it for a year. What
is this incredible blue cigar
with smoke ring? I wish I knew. A picture
in an old magazine, it came with no caption
or name, just the cigar, have seen no
sign of it anywhere since

There
may be someone
who has come close a team
including celebrated artist who
has made a model of a new concept of
magnetar field formations in intensely
dynamic objects. Below is the
model assigned to this
link. I cannot
argue with
the model
because it is
more or less exactly
needed to explain bi-lateral
symmetry which forms the heart of nebulas and
galaxies where ever you look and once you know what to look for



More about this unusual cigar with smoke ring

HANDLE BAR SYMMETRY - NEBULA NGC 6369

Handle bar symmetry details are in the Nebula1.htm page.

PHYSICS PRINCIPLES REVEALED IN NEBULA TRACE OUTER SHELLS

Related pages:   symmetry.htm   nebula1.htm






Click here for comparative small original
Click here for comparative small enhanced

The 3D will reveal at once that the double edge-shells at upper right are closest to the camera, the single outer edge-shall lower left is farthest away, and that an abrupt vertical drop is seen from the left edge of the main ring to the lower left outer edge shell.

A ring current (in highlighted window) cutting across the lower hem, is a pole. A platten jog in the middle of the handle bars is another pole. The two flying handles at each end of the handle bars are two more poles.



Engineering physics have at least two poles visible in design, two more poles extend out in space in the handle bars, one a vertical design ornament with wisps in cyclonnic movements around a center woggle sticking out, the other the lower more flat and facing up horizontally.







The loop to the upper (vertical pole) rises vertically from the center hub. The loop to the lower (horizontal pole) comes out horizontally from the center hub.



The instant teaching of fundamental symmetry behavior modes is self apparant. Poles can be used to make quark models. In this presentation no attempt is being made to model quark properties using this image however quark properties are described using the Crab nebula as a quark model.

Another pole, off the left end of the nebula, extends in a downturned tail left) and is the bi-symmetric pole opposite to handle bar array. The two handgrips may be of the same polarity, the hub in the middle of opposite polarity, which is why the handle grips are so outreached far apart, which also explains the jog in the hub, each handle grip is magnetically connected to the hub in a slightly different polar plane orientation.







The above objects are not exactly the size in two different sized frames. You can see 3D by tilting your head when focusing the two images together by eyesight. The colored has been reduced in height just a touch, the black and white expanded in height by the same touch, to be able to fit the two views stereoscopically together.

Time spent at a graphic editor's options could produce two equal sized images but what will be further revealed is not alluring enough for time spent doing it.

One item immediately noticed is the brown center area is cammed at a different angle than the primary cams of the ring and the nebula as a whole.



Small ring currents at right angles (both face on and sideways) to the rim saturate the rim with polar planar vortexes amongst conflicting and consolidating forces fields.





The tufting fronds in the outer perimeter to the right are similar to fronds (snowflake blades) seen in other nebulii, which you can see in the symmery.htm page, in respect to the fact that when you drew in their completed arc entries (fill in the missing blanks of their curvatures) you will have a moire strip. A moire strip is modelled - made from a supermarket's brocallie tie.



CRAB NEBULA IN X-RAY


Crab Chandra x-ray site
Crab Polamar hexagrams site

Below
is the Crab
Nebula in x-ray, by
Chandra. Enhancement can show
substantially more fine detail, and a
Histogram view can show a larger object in
seeming lower volume x-rays captured
by Chandra's false colored eyes -
x-rays cannot be seen, their
presence is always shown
in false colors but
true to form

At the
front (left),
dish disks arc in
forward thrusting horizon
planes, behind the center pulsar, diskals
wrap vertically in distinct opposite
polar plane angle to the front
forward arcing disk lips





The
twist in
polar alignments
happens through the circular
ring hubs at long reach out on either side
of the pulsar, the left hub facing up, the right
hub facing down. This fundamdamental 4-way polarized
arrangement is reminiscent of the 'cigar'. Bi-lateral
symmetry continues with the front woggle toggling
down to the right, a rear thin string tail
bending up and to the left. Every
feature has an opposite
feature at a
different
horizon plane that
has (each) two different prime angles

A serious
theoretical question
is if it is possible to determine or
predict in advance which is up, which is down, which
becomes left, which becomes right, and which will
be horizontal, which will be vertical,
in studying such pulsars

MORE INTRODUCTION TO BI-LATERAL SYMMETRY










Cartwheel time reverse-engineered collision.
Cartwheel center hub rotor-rotating like a knuckle joint.

Vertical
spinners on the
bottom edge of the ring,
a horizontal punchout on the upper
left rim, and kinking ribs that come foreward
on a diagonal from the upper left to lower right are
just a few 3D features. The rim itself is wobbling, it has
an oscillation causing one half to distort in one way, the
other half to distort in the opposite way, basically.
The two strongly kinking spokes may be what is
left of two original dominant arms.
The many spokes are all deep
arcs from the center
knob which is
quite well
forward like a
standout button, from the
ring. Each of these spokes is a distortion
in dfferent motion and different angular momentum.
The whole Cartwheel assembly is so like a ferris wheel taken
off and cleave folding as it sails out over the city that I feel
uncomfortable showing any less than four enhanced views to
give you a chance to get the look and feel of the whole
thing and its best details in 3D. Also, spokes
hunch outward like sculpts of a
potato chip corer

THE CORE HUB









Several
annotations
are needed for this
scene. The center is a residual
spiral - a faint arm prongs off the top curled
away and another curls forward from the foot of the
core central, which itself is cammed at a noticable angle
like a looking glass in a circular frame except the frame has not
one but two gimbles, and the frame itself is bi-symmetrically
kinked like the cotter pin cigar ring above. Streams of
drift hurry away from wedges, and hot cometary
jets in white festoon the outer rim.
Two extra bright enhancements
cure most details of
their thrills
instead it
makes more
visible the fact
that a lot of chaotic
debris surrounds the main objects




NGC 1512 A PRE-CARTWHEEL GALAXY ?



A kind
of galaxy
the Cartwheel could
have been before collision is
Ngc 1512 which has a center hub, two arms
extending in polar opposites from opposite sides of
the center hub, and a built in outer ring already bi-furcated
in bi-lateral twist ready made to end up perhaps the same as the
Cartwheel with its yellow and blue population stars separated
into two external simese co-joined small galaxies. Oval
ring galaxy Ngc 1512 even has a small companion
interacting nearby, ripe for making a
new Cartwheel, if an impact hits
the inner web in precisely
the right location

BI-LATERAL SYMMETRY IN DYNAMIC FORMATIONS
OF GALAXIES
BI-LATERAL SYMMETRY AT THE CORE OF GALAXY NGC 5236


   

When
these two
images are focused
together they will be in stereo.
How is this possible?
Read now

Bi-lateral
symmetry, in this
case asymmetry found at
the core, cannot be more self
evident the instant the above image
is viewed in stereo by focusing the two
images together. All galaxy cores seem to
have bi-lateral symmetry to one degree or
another, in the case of Andromeda the
bi-lateral symmetry seems slight
for appearances of the large
glowing ball, but when
appeared exposed
the bi-lateral
symmetry is
far more
obvious



The
core a
flattish glowing
orb socked in a cavity the
orb so bright so intense it is lighting
up part of the rim, so hot it usually masks
out to white in any photo designed to
capture the far less radiant
rest of Andromeda

Fresher Andromeda core images are here

ANDROMEDA'S CORE AREA
    See back and whites below, what Andromeda's core looks like, seen for the first time in originals enhanced by a moi, the orginals showing nothing whatever of Andromeda's core, these enhancements showing core dynamics similar to core dynamics seen in many other large galaxies including spiral galaxies photographed by Hubble

Glowing core is cammed at two oblique angles due to angular momentum gradients at varience to mometums in the rim



 



Original a diffuse vague shape, enhancements reveal core dynamics



Even
if you
disagree with
the concept of stereo
in mono images you have to agree
that superimposing together two images of
extremely different densities produces
an excellent concequence in new
details revealed

Original a dot, enhancements reveal core dynamics





These
cores views
may be the first
ever shown of Andromeda's
actual core. It is similar in fact
typical of cores seen in other massive or
super massive galaxies. Hidden under the veil of
glow Andromeda's core is no different than any other

The
elongated
s-shaped core is
most noticable, one side
flaring Up, the other curling Down, in
a core bole sitting 'cammed' off angle (out of kilter)
to the swirling arms that surround it, revealing that core
forces as are these are rotating at different velocities
each on different vectors than the velocity of
the outer swirling arms

For
comparison
the core of Ngc 1365,
a very different galaxy, in an
extreme closeup view by Hubble, despite
galaxy difference, nevertheless has a similar
look and feel to Andromeda's
s-shape core



One
noticable
difference is the
core of Ngc 1365 is more
thrust up like pushing shards piling
into mountains, whereas Andromeda's core
to the extent we can see it is more
long sweeping and evenly
raced, less chaos

Now
is a good
opportunity to show
off what virtual 3D can really
do. Ngc 1365 is deeply cleaved and crevassed,
you cannot see how deep until accepting the inevitable
and look at the image in 3D by focusing the two images
together. There is a small hole at the base of
the core mount, the hole may not be
an actual hole just a place
where lumonics are
not radiating,
but also
may be
a glimpse of
a void which might
surround a mighty black hole
though stupendously powerful the black
hole occupies an extremely small area and is
(black hole) conjectured by theorists to sweep
clear an area surrounding its event horizon,
also, degrees of separation due to image
patching inconsistencies are easily
seen in thin straight lines, the
flaws hard to see in mono



BI-LATERAL SYMMETRY - ONE SIDE OF THE CORE
FLARES UP, THE OTHER SIDE CURLS DOWN




BI-LATERAL SYMMETRY IN THE NUCLEAR CORE ITSELF




The
hot core
kernal (yellow and
white) is standing upright like
Niagra Falls in a pronounced vertical cant
relative to the extended length of the long core
axle, and also notice that yellow tongues of
flame at the top are flashing backward
while the yellow fingers at the
bottom of the white core
are shooting forward,
this is definative
for bi-lateral
symmetry,
since the
bi-lateral aspect
of the nuclear core itself
is vertically rotated (upright) at
right angle to the horizontal long core axle,
the upright core's yellow fingers are also rotated at
right angle (forward - bottom, back - top) to the long core
axle (left side down, right side up). Concider the amount of
sheer fundamental galactic and black hole core physics
just outlined in this above brief paragraph. A real
powerful moment made in the history of home
grown astronomy, the above image was
one of the very first viewed in
Virtual 3D after obtaining
a scanner and in 1/10th
of a second after the
stunning flares vrs
down curl was evidenced
in view I knew there was a
whole new venue to the understanding
of galaxies, a flash like that just does not go away

POWER CORDS CONJOIN AT A 'V' BREACH



This
enhanced
and magnified
spectacular view of
Ngc 5236 shows a short
thin pair of arms (like power
cords), doing a 'V' breach
at the rear end of the
long core axle. The
image is not
able to
tell
if the
power cords
are diving in at
the 'V' breach, or issuing
out where the two power cords diverge

THIN SPINAL CORDS BI-LATERALLY VECTOR IN OPPOSITE DIRECTIONS FROM OPPOSITE ENDS OF THE CORE

Notice
that two nerve
thin lines edge the core
axle each on an opposite axle-side,
each radiating in opposite direction from
the hot core kernal, the rear line becoming the edge
of a down curling 'V' breach the forward line becomes part
of the flares which swoop up into branching fronds and
clumps on the galaxy's right side. Yet another
bi-lateral symmetry, the two thin lines
seem characteristic of galaxies,
the next image proves, in
the long core axle
of Ngc 1365







Note
spinners
on the lower arm
at the bottom level of the
core, these spinners have been
caused by something small and fast
passing over or through the arm


NGC 5236 AGAIN





Both
galaxies
have profound
humps comprising core
mounts or bulges, and round
curving curtain-sheets of rather
smooth matter diving down into
deep places below the core.
Its a roller coaster ride
along the core axle

Notice how
fantastically an
image's aspects can shift
in an optical illusion when the image
is turned around. This simple demonstration (using
a zoom magnified from Ngc 5236) illustrates how urgent it
is for astronomers to do their utmost to show images in
the frame of reference's orientation in which the
image was captured, revealing its true lay in
deep space, this way, upcurls and down
sweeps can be understood in correct
dynamic context without illusions







MERCEDES CORE EVENTS

M51 also
has a Mercedes
(dark chasms) at the core,
shown in one of the first ever Hubble
views when its lens was myopic and
only a small central pore
of an image was
focusable

Notice two white hot spots on either side of the Mercedes





Even
in this
sinfull image
notice bi-lateral
coherency, fingers at
the top of the Mercedes
flare up, while the
bottom's curl
down

THE PINNOCIO'S NOSE SYNDROM

And
if yer
haven't noticed
yet that one side is sweeping
up like a spiky teenager's hairdo and the other
wrapping down like hermit crab's legs yu ain't ever gonna
notice more, for instance a wholesale long distance enormous
swoop right down deep into the tiny center from arms
that are waving right up front in your
face toward the camera



Pull
on the
spike at the
right until the whole
galaxy becomes stretched out in
a long axis like Pinoccio's nose stretching
far back into the rear of deep space and you have what
Ngc 3256 is really like out there in the universe. It is NOT
FLAT, it is not 2 dimensional, it is not a roughed up round
spiral, it is not as thin as the rings of Saturn, it is formally
a long ski slope nicing through space, the forward end
(spike) closer to us (the camera) the bunched
up turbulence at the rear the farthest
away, the vector of the long
elongation from fore
ground lower right
to the far rear
upper left.
Believe it, this
is what Ngc 5236 is
really like in deep space. It
is not alone, Ngc 2997 shown on this page,
is more or less exactly the same, from where we see
its front end waggling out elbowing like a 3D movie special
effect right in our faces its rear end so far back you
can hardly really see it in pristine detail

Long range pullback view of Ngc 5236



Faint windaround arms lower left, upper right, are made completely visible by very high enhancement. This makes Ngc 5236 very much like the supergalaxy chain-link form of Ngc 1365

3

Long drawn out fluke in space - lower right closest to the camera, upper left farthest away. Focus on the upthrust spike at the right to get a sense of the long distance stretch





If you
really want
to toll the bell
announcing, take a look
at the view of Ngc 5236. After
one look, believe me, you may not want
to read your last published paper ever again


SUPERGALAXY NGC 5236 - ALIAS M83 IN HYDRA - ALIAS THE SOUTHERN PINWHEEL


The
standard
gallery of Ngc 5236
images in astronomy sites are
misleading, showing only the central bright
parts of most interest to astronomers intent on 2 dimensional
theories trying to computor model the formation of Ngc 5236's
arms, with repeated failures. The true size of the galaxy
is somewhat larger, the extended supersize in very
low radiant materials not normally factored
into brightly colored optical light
views, the low radiance matter
nonetheless captured on
film and available
by highly
enhancing
the original
image with courage

Here
next two
views from an
earlier DSS historical
image the left the original the
right showing the greater superform mass

   

Here
next an
view showing
more arms, greater expanse,
compared to the original, the original
more or less the totallity of the galaxy astronomers
call the irregular 'disturbed' bar galaxy M83, the original,
since expecting to show the whole of the galaxy, is
surrounded by pitch black midnight sky zero
(as the human's eyes might see it in
at midnight) but enhanced a
significant portion of
the galaxy has been
cropped from the
picture's frame,
the cropped data all
part of the missing mass
missed by too hasty astronomers,
the highly enhanced view still only
showing what appears in the small
left DSS view immediately above.
Try and guess how much mass
is missing from images



RELATED PAGES

Bi-lateral galaxy states
Symmetry in rubic cubes
Tree root cylander motions
Impact vibrations in sound
Bent wire galaxy paths
Galaxy handedness
Galaxy model



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