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Thursday, March 24, 2016

AuT-gspace II

I find it disappointing that I get more hits when I write a post that discusses trump than I do on physics.
Why bother?  For that matter, why music tracks?  Why equations at all?
I am talking to blocks of wood.

Anyway, I have some points to make before addressing g-space more directly.  I will digress and to say that calling something which had no dimension "space" of any type is something of a misnomer.  Our language is not specifically geared, however, to describing the world that any presumed god would live in.
Our reality is a reflection of what happens in g-space.
The key to acknowledging and understanding g-space lies in looking at what we can see even though we have to abandon what we see to understand it.
I read these stupid articles every day, 'are the multiple universe', 'scientists find evidence of the big bang', 'scientists look farther back in time than ever before', 'higgs boson discovered', 'was einstein right'
Every possible stupidity and I feel so alone.  No one has caught up with me yet, I stand here and can only see you if I turn around and look behind me.  The naked apes, and yet, if I look in the mirror, I see another ape, pretending that my understanding of what everyone else hasn't even imagined yet is important.  Sigh
I thought I was on to something when I was the only one who understood what gravity was, when I was the only one who understood what black holes were, when I understood the beginning and the end of the universe, when I had unlocked the connection between information and dimension, when I determined that time was distance and figured out how small the distances were, when I replaced every distance with coordinates, when I replaced coordinates with solutions to equations and when I replaced equations with g-space.
I did this because I accepted nothing.  I had to have a cause for every effect.  I had to know what everyone else accepted.  I stood entirely alone.

I'm willing to look at my drawings and find whatever alternatives exist.  For example, if we accept that the lower time states must be longer, the stacked spiral drawing might look more like this:
Several ideas are embodied.  The first is that the longer spirals are required to be the lower (n lower) time states.  The idea that the shortest might be the most compressed is impossible in a universe unless the spirals can overlap at some point in time (in this drawing the next layer of compression would be 180 degrees off and the next would begin to overlap.  While this model might otherwise work, since overlapping equations are not impossible, but another possibility would be that as each new spiral would shift to a different universe which is unlikely in some respects.  However, in this case we have a model (intersecting linear spirals) which include radical shifts at each compression state.

Compression has two faces.  The first was a huge totally organized spiral intersecting a single spiral, but this model doesn't work at the most compressed state, so it seems more likely that there are two mirror image spirals and that when they collide, one does NOT pick up spirals form the other, but that instead the spirals within the two intersecting spirals stack.  The model looks more like this:


The opposite faced spirals are spirals of opposite matter types, but unlike in the other model, they never combine, instead, based on a formula tied to the length of the intersection and the total amount of information available you get to exponentially compressed states.  Note that this model works even if there is only one spiral, although the mechanism of compression is not otherwise satisfied.
So let's talk about the drawing above in a little more detail.  The "boxes" on the right are the intersecting spirals we've previously discussed.  This particular drawing is the drawing close to absolute compression.  So this is a relatively simple model of the universe.
One thing you'll note is that while the amount of compression increases, while the number of separate time states is dropped, the total amount of information is constant.
The inner box shows the 1:2 F series (ct4+x), the box below it the 2:3 box (the 1 of the prior box is part of the 3-ct3+x), the next is 3:5 (ct2+x) and the final one is 5:8 (ct1+x).  If we simplified this model, x would be 0 and we'd have auniverse with a very limited amount of compression, far less than what is theorized.  At the bottom of this post (below the link) you'll see actual mathematical modeling for around 350 overlaps.  Based on this model and the expected amount of information in the universe, it's possible that we're only affected by perhaps 150 or less layers of compression, but that's an earlier post (just in case you think I never actually do the math).
For the sake of discussion, the 150 spiral model would mean that x would be 146 (not 145).  We can ignore the actual value of x for purposes of this discussion.
CT4+x is a fully compressed universe.  The next transition is the 0:1  (ct5+x) and the next transition is from g-space so it is what we're looking for in this discussion.
For those of you who are seeing the smallest line above as begin "2"; remember that the model above two f series.  A single linear F-series looks more like this:

Anyway, the actual look is less important at this point than the fact that the total amount of information at the 1:1: transition is fully compressed.  There is no ct0 (quantum space) between these two very dense sets of information (matter/anti matter represented by fully compressed information) and each of the two squares (the bottom two groups in the picture on the left) each contain all of the matter and anti matter (information and anti-information) in the universe.  This is essentially everything happening at once, there is no linearity to the universe at this point and we're essentially at g-space, this is the equivalent or the near equivalent of a true algorithm (e.g. x=F[I(tot)+NegativeI(tot)]) where F is the algorithm defining the two intersecting linear F-series spirals.  Obviously, there is a solution from zero to 1 (0:1) which is a dimensional feature of the universe in the spiral above, we just can't see the zero line because it comes from non-linearity, non-dimensional g-space.  It is the transition from the chalk board of g-space to the space time that you think is important but I know is not.
So you go from the ct5 very compressed state to the less compressed state shown as ct+x.  This is pretty compressed, but the nature of the information is such that if there is no ct1 (space in this case) there is separation of very dense information states-all the space has been absorbed in such a case.  The separation increases steadily, but in this model, there are no examples of two states at once (such as is shown in the top picture) but it may be inherent in each of the compressed states that you'd have the space included as shown in the top picture or this type of information may vanish entirely, although this would mean the stacked spirals collapse at different compression states, entirely possible but not necessarily the case.
The purpose of these drawings, however, is only to provide a mechanism to conceptualize compression and how it works with intersecting spirals.

But we were talking about G-space and what it is.  One way of viewing G-space is that it is a state where every possible thing, working and non-working, exists at once.  It is so much more than all time happening at once, because forms of linearity that we would consider unstable or illogical can exist alongside of our universe.
In such an environment, the idea of multiple dimensions, is very trivial by comparison.  Reality becomes solid, a durable equation and at the same time becomes as insubstantial as a spring day alone.

https://www.youtube.com/watch?v=n8cfbBgXIow

The math of 350 overlaps

overlap overhang/side overhandtotal calc
0 0 1 2 for next series
0 Plus 1 plus 4 2xoverhang overlap
0.4 2 3 6 6 8 2x overhang plus overlap=next overlap
0 minus 3 plus 2 2 argument-this is the universe we see-2 or more overlaps
0.615384615 8 5 10 10 18 as it is compressed, there is less to see, its more compresssed
0 minus 2 plus 14 14
0.529411765 18 16 32 32 50
0 minus 11 plus 28 28
0.561797753 50 39 78 78 128 f-number=sum of overhang plus overlap 128
0 82
0.549356223 128 105 210 210 338 overlap calculation for next series
0
0.554098361 338 272 544 544 882
0
0.552285535 882 715 1430 0.6 1430 2312
0
0.552977757 2312 1869 3738 3738 6050
0
0.55271332 6050 4896 9792 9792 15842
0
0.552814321 15842 12815 25630 25630 41472
0
0.552775741 41472 33553 67106 67106 108578
0
0.552790477 108578 87840 175680 175680 284258
0
0.552784849 284258 229971 459942 459942 744200
0
0.552786999 744200 602069 1204138 1204138 1948338
0
0.552786178 1948338 1576240 3152480 3152480 5100818
0
0.552786491 5100818 4126647 8253294 8253294 13354112
0
0.552786371 13354112 10803705 21607410 21607410 34961522
0
0.552786417 34961522 28284464 56568928 56568928 91530450
0
0.5527864 91530450 74049691 148099382 1.48E+08 239629832
0
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0.552786405 2.44472E+64 1.9778E+64 3.95563E+64 3.96E+64 6.40035E+64
0.552786405 6.40035E+64 5.178E+64 1.0356E+65 1.04E+65 1.67563E+65
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0.552786405 1.67563E+65 1.3556E+65 2.71123E+65 2.71E+65 4.38687E+65
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0.552786405 4.38687E+65 3.549E+65 7.0981E+65 7.1E+65 1.1485E+66
0
0.552786405 1.1485E+66 9.2915E+65 1.85831E+66 1.86E+66 3.0068E+66
0
0.552786405 3.0068E+66 2.4326E+66 4.86511E+66 4.87E+66 7.87191E+66
0.552786405 7.87191E+66 6.3685E+66 1.2737E+67 1.27E+67 2.06089E+67
0.552786405 2.06089E+67 1.6673E+67 3.33459E+67 3.33E+67 5.39549E+67
0.552786405 5.39549E+67 4.365E+67 8.73008E+67 8.73E+67 1.41256E+68
0
0.552786405 1.41256E+68 1.1428E+68 2.28557E+68 2.29E+68 3.69812E+68
0
0.552786405 3.69812E+68 2.9918E+68 5.98369E+68 5.98E+68 9.68181E+68
0
0.552786405 9.68181E+68 7.8327E+68 1.56655E+69 1.57E+69 2.53473E+69
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0.552786405 2.53473E+69 2.0506E+69 4.10128E+69 4.1E+69 6.63601E+69
0.552786405 6.63601E+69 5.3686E+69 1.07373E+70 1.07E+70 1.73733E+70
0.552786405 1.73733E+70 1.4055E+70 2.81106E+70 2.81E+70 4.54839E+70
0.552786405 4.54839E+70 3.6797E+70 7.35945E+70 7.36E+70 1.19078E+71
0.552786405 1.19078E+71 9.6336E+70 1.92673E+71 1.93E+71 3.11751E+71
0.552786405 3.11751E+71 2.5221E+71 5.04424E+71 5.04E+71 8.16175E+71
0.552786405 8.16175E+71 6.603E+71 1.3206E+72 1.32E+72 2.13678E+72
0.552786405 2.13678E+72 1.7287E+72 3.45737E+72 3.46E+72 5.59415E+72
3.45737E+72

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