The First Probable Physical Universe
Probable and parallel universes can be defined by the elementary particles that compose them. Those that are nearest to our universe in energy, have a composition of elementary particles that is similar. From the basic pattern of mass values, we may be able to predict the composition of the first probable universe.
Copyright @ 2024 by RLighthouse, LLC
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Probable and parallel universes can be defined by the elementary particles that compose them. Those that are nearest to our universe in energy, have a composition of elementary particles that is similar. From the basic pattern of mass values, we may be able to predict the composition of the first probable universe.
Copyright @ 2024 by RLighthouse, LLC
CAUTION: The government criminals (NSA) have likely placed tracking tags on files and images on this website.
Figure 1. Note the difference in mass values for each particle, versus our known universe.
The First Probable Universe
Elementary particles involve probabilities and the mass values can give us an indication of our position within the larger field of probabilities. This diagram shows a possible configuration for the first probable universe.
Although we can only estimate where this series of values will occur, it gives us a starting place and the ability to construct a "map of probable universes."
Ultimately, having such a map, and by testing the probable locations with actual visits, we can construct an overall map that will allow us to predict and visit for example, where a probable universe is located.
Let's say we want to visit a probable universe where the dinosaurs did not go extinct.
The map can give us an idea where this might be located. It is important to understand that our own molecular construction from elementary particles, will not be stable in this environment. But it can be visited using the camera techniques described in my ebook - "The Discovery of Parallel Universes."
Using
Energy = Volts x Amps x sec
I am proposing this pattern of mass values as representing the First Probable Physical Universe, in Four-Dimensions:
Yes, I am aware it is a Base-10 construct. However, the mathematical patterns remain, regardless of the construct or Base-System used.
130--10--130
120--5---120
110--2---110
100--1---100
I also suggest the possibility that the Dream Universe (3 dimensions) may have existed before four-dimensional universes, in our terms.
It would also be interesting to see how specific mass values might result in certain events within the field of probabilities.
For example, we might discover that when the Higgs Boson reaches a value of 200 GeV, it results in a large increase in the number of supermassive black holes.
Or perhaps when the Top Boson exceeds a value of 1000 GeV, the universe becomes unstable?
How exciting it will be, to be among the first researchers to explore these possibilities! I envy their pursuit, and will be sending my personal energy to assist.
The First Probable Universe
Elementary particles involve probabilities and the mass values can give us an indication of our position within the larger field of probabilities. This diagram shows a possible configuration for the first probable universe.
Although we can only estimate where this series of values will occur, it gives us a starting place and the ability to construct a "map of probable universes."
Ultimately, having such a map, and by testing the probable locations with actual visits, we can construct an overall map that will allow us to predict and visit for example, where a probable universe is located.
Let's say we want to visit a probable universe where the dinosaurs did not go extinct.
The map can give us an idea where this might be located. It is important to understand that our own molecular construction from elementary particles, will not be stable in this environment. But it can be visited using the camera techniques described in my ebook - "The Discovery of Parallel Universes."
Using
Energy = Volts x Amps x sec
I am proposing this pattern of mass values as representing the First Probable Physical Universe, in Four-Dimensions:
Yes, I am aware it is a Base-10 construct. However, the mathematical patterns remain, regardless of the construct or Base-System used.
130--10--130
120--5---120
110--2---110
100--1---100
I also suggest the possibility that the Dream Universe (3 dimensions) may have existed before four-dimensional universes, in our terms.
It would also be interesting to see how specific mass values might result in certain events within the field of probabilities.
For example, we might discover that when the Higgs Boson reaches a value of 200 GeV, it results in a large increase in the number of supermassive black holes.
Or perhaps when the Top Boson exceeds a value of 1000 GeV, the universe becomes unstable?
How exciting it will be, to be among the first researchers to explore these possibilities! I envy their pursuit, and will be sending my personal energy to assist.
Figure U-1.
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