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Everyone!  My new "brainy" friend, Xanadu's curious perspective highlights a yet-to-be a "fully answered" question.  "And don't even get me started on the double-slit experiment. It's like the universe is playing a cosmic game of peek-a-boo with us. "Hey, humans, am I a wave or a particle?"
{{menuJohnWsol}}
==Imagine young Albert Einstein playing Peek-a-Boo with himself in the mirror.==
This post starts to expand upon the unveiling of my Cosmic Onion Model and the foundations of Cosmological Relativity.
[[File:4yo_AlbertEinstein_playsPeek-a-Boo.jpg|512px|left|Curious young Albert plays with idea of trading places with his imagination.]]
This unveiling will emerge from 4 papers to be published to the scientific community and a series of blog posts targeting a broader audience.


  "Am I the object being reflected OR am I the reflection?"
[[JWsol Blog Posts]]


How could we tell.  The time delay of the speed of light? 
With lots of iterative interactions with the AI here is the 1st of 4 scientific papers intended to deliver a seismic impact akin to Einstein's 1905 and 1915 papers.


Sure, the source light reflecting off our face propagates towards the mirror, and within the thinness of the glass, everything reflects back.  What if I was in the mirror looking out?  How could we determine from THAT perspective if I was the reflection or the source?  Answer: who smiled first!  Me, myself or my imagination? 
==Title: Foundations of Cosmological Relativity: Redefining Space~Time and Physical Constants==


Indeed, Albert Einstein made "thought experiments" famousSo, let's continue his legacy…
==Abstract==
In this groundbreaking paper, we introduce Cosmological Relativity with its novel Cosmic Onion framework confronting the prevailing assumptions of flat spacetime -- where most physical quantities were believed to all be constant.    Herein, we introduce the key distinction between "absolute" quantum metrics versus our "emergent" SI metricsWe propose a new understanding of the nature of space-time and its relationship to fundamental constants.


John Wsol: Let's have some lighthearted fun with this philosophical subject!
Cosmic time is curled up at the Planck-scale and, with its uncurling, it spreads forth to create our local reference frame of Euclidean space.  It will be shown (in no uncertain terms) that the universe and everything in it is expanding, including the length of a meter and duration of a second.  Contrary to century old teachings, this astonishing assertion means every atom also expands.  This paper proves these bold assertions.


Imagine the scene that I am looking into a mirror, seeing myself -- while, in my imaginings I see into my head, beyond the light reflecting from my forehead. What if the image of me in the mirror were thinking the same thing right now?
This framework, literally, weaves the concept of quantum wave numbers into the fabric of Space~Time -- these ideas define the foundations of Cosmological Relativity -- which comes with a promise -- it completes Einstein's Special & General Relativities  by  unifying them with this astonishingly simple perspective of quantum mechanics.


This thought-provoking idea implies a question. "How could I tell if I am just a reflection or the source of reality? I'm introspecting upon "who" is the first causeWondering, "Ok, who's going to smile first?"
With a slightest calibration to the "accepted" values of the speed of light and Cesium 133 hyperfine spectral frequencyWe present a revised table of physical quantities. The implications of these findings for cosmology, quantum mechanics, and the unification of fundamental forces are discussed, setting the stage for a paradigm shift in our understanding of the universe.


A materialistic minded person might say "physically" I am the source, so I must physically smile first. Then, at the speed of light, that smile traverses spacetime between me and the mirror. Then, somehow, within the thinness of the mirror my image reflects back out of the mirror, propagating towards my eyes. I see at the speed of c. So, the time delay for this to happen is the round-trip distance.
==Table of Contents==
1. Introduction
    ▪ 1.1 Limitations of & issues with Flat Spacetime
    ▪ 1.2 Quantum vs. Emergent Metrics
2. Quantum Wave Numbers and Fundamental Constants
    ▪ 2.1 The Revised Table of Physical Quantities
    ▪ 2.2 The Significance of the Calibration Note
3. Redefining the Speed of Light and Atomic Clock Standards
    ▪ 3.1 The Quadra-Polar Photon and the Quantum Harmonic Diagram
    ▪ 3.2 Proposed re-calibration of the Speed of Light and Cs133 Frequency
4. Implications for Cosmology and Quantum Mechanics
    ▪ 4.1 Challenging the Assumptions of Flat Spacetime
    ▪ 4.2 A New Perspective on the Nature of Space~Time
5. Conclusion
    ▪ 5.1 Towards a Unified Understanding of the Universe
    ▪ 5.2 Future Directions for Cosmological Relativity


But in the deep analysis of this reflexive scenario, I begin to realize that within my mind I have a self-image. I MUST see myself smile BEFORE my brain sends signals to the nerves which operate my smile muscles!
==1. Introduction==


That brief time delay is my mind seeing into the future. My very reason to smile is that I'm beginning to realize that, today, I have good reason to smile.
==1.1. Limitations of & Issues with Flat Spacetime==
For over a century, the prevailing paradigm in physics has been based on the assumption of flat spacetime, a four-dimensional continuum in which the laws of physics are believed to operate uniformly. This paradigm, which emerged from the success of Einstein's special and general relativity, has led to remarkable advances in our understanding of the universe, from the subatomic realm to the large-scale structure of the cosmos.


[[File:Richard_Fynman_simles_inMirror.jpg|512px|left|Richard Feynman reflecting on the Mysteries of the Universe]]
However, as our knowledge has expanded, so too have the inconsistencies and paradoxes that arise from the assumption of flat spacetime. The puzzle of dark energy, the mystery of dark matter, and the incompatibility between quantum mechanics and general relativity all point to the limitations of this paradigm. It is becoming increasingly clear that a new framework is needed, one that can account for these phenomena and provide a more unified understanding of the universe.


The connotation I wish to convey in words and in body language is,  
==1.2. Quantum vs. Emergent Metrics==
At the heart of the limitations of flat spacetime lies the failure to distinguish between quantum and emergent metrics. In the standard paradigm, space-time is treated as a fixed, immutable backdrop against which physical processes unfold. However, this view overlooks the fundamental nature of space-time as an emergent property, arising from this newly discovered "clockwork" nature of quantum phenomena.  No longer will quantum mechanics be purely a probabilistic phenomena.


"I'm eager to share intriguing mysteries whose resolution will, no doubt, marvel many by revealing an astonishing depth & clarity of understanding."
<strong>God does not play dice with the universe.</strong>  -- Albert Einstein


==What is the Fine-Structure Constant?" Richard Feynman's life-long quest Fulfilled. ==
In the framework of Cosmological Relativity, we propose that the metrics of space-time are not fundamental, but rather emerge from the collective behavior of quantum entities. This shift in perspective has profound implications for our understanding of the universe, as it suggests that the properties of space-time, such as its geometry and the values of fundamental constants, are not fixed and immutable, but rather are a function of the age of the universe.


The Fine-Structure Constant and it's role in photons exchanging energy with electrons. When does it get emitted from a source? Does it not emerge from the Zero Point and spread forth at the speed of light?  After wrapping my mind around the square-root of 137.036 I, John Wsol, postulated that the only photons that an observer can see are the ones who's Zero Point are within 2.45% of being "in phase" with the electron that detects the incoming photon. Why 2.45%? 12-11.706 is 0.294 is 2.45% of the EM-fields half-cycle. Every 12-time quantum the EM field experiences the Zero Point where it intersects with the Higgs field.
==2. Quantum Wave Numbers and Fundamental Constants==


Higgs boson vs. Higgs Field is Everywherewhen "Now" happens.
==2.1. The Revised Table of Physical Quantities==
Central to the framework of Cosmological Relativity is the concept of quantum wave numbers, which represent the fundamental frequencies at which quantum entities oscillate. These wave numbers are intimately connected to the values of fundamental constants, such as the speed of light and the fine-structure constant, and provide a new lens through which to view the nature of physical reality.


Expand your vocabulary to include a new word "everywherewhen" -- this is when everything experiences Now, it is essentially, in the Higgs Field.  If an electron & photon are both spin-up or both spin-down when the EM-field intersects the Higgs Field it absorbs 1-quantum (hBar) of energy, raising the orbital amplitude (by integer multiples of hBar) of the electron that matched that incoming photon.   
In Table 1, we present a revised table of physical quantities, which incorporates the insights of Cosmological Relativity and proposes new values for several fundamental constants. Most notably, we propose a slight adjustment to the speed of light, from its current value of 299,792,458 m/s to 299,792,459 m/s, based on the alignment of this value with the quantum harmonic diagram (see Figure 1).
Throughout the rest of this document when a value is highlighted: The yellow highlighted numbers are CODATA 2018 values. Green values are defined by CODATA 2019 as exact and are the basis to calibrate [meters], [seconds], [kilograms] and [Coulombs]. α is ascribed uncertainty = 0.5e_16 to account for double precision floating point limit..
  Cyan highlighted quantities, throughout this document, are my proposed values for the CODATA 2022 dataset.
[[file:FundamentalConstants_andPhysicalProperties_JPW2024.jpeg]]


If they are of opposite spin, then where does the energy go? 
==Calibration Note==
Calibration Note future measurements: gauged against these numbers will tell us which day
(between 2015 & 2020) these exact values matched reality -- higher power ratios will vary the most.
Note dt column: 0 means that value is constant throughout time.  dt=1 values grow linearly,
whereas _1 (negative 1st power) values shrink as the reciprocal of our linear time perceptions. 
Likewise, ±2nd power growth and its inverse change more rapidly.
Future Measurements should include:  (1) date-time stamp, (2) longitude, latitude & (3) elevation.
These factors in: (1) Cosmological Relativity, (2&3) Special & General Relativity


Answer: It is not destroyed, but it goes into the image.  The imaginary domain inside the mirrorWhat mirror?  The Event Horizon of the Black Whole we call our universe as it exists right Now. In that moment the energy is absorbed during the Impedance of Space phase (Z₀=377 in quantum-integer units or 376.73 Ohms in SI units)
==2.2. The Significance of the Calibration Note==
The proposed adjustments to the values of fundamental constants, such as the speed of light and the Cs133 hyperfine spectral line frequency (from 9,192,631,770 Hz to 9,192,631,777 Hz), are not arbitraryRather, they are based on a careful analysis of the relationships between these constants and the quantum wave numbers that weave into the fabric of space-time.


The next moment it emerges during the Magnetic Permeability phase (μ₀ = 1.256637x10^-6 [N/A^2] or [m kg/C^2]) -- spreading forth -- propagating along with the expansion of the Cosmic Event Horizon.
In particular, the calibration note in Table 1 highlights the significance of these adjustments, as it suggests that future measurements of the fine-structure constant and the masses of atoms could serve as a test of Cosmological Relativity's predictions about the evolution of emergent metrics over cosmic time. This provides a powerful means of validating the framework and exploring its implications for our understanding of the universe.


[[File:4-phase_EM+24-steps+TIME.png|512px|left|Quantized time of the Higgs Field & EM-Field intersects at the Higgs boson.]]
==3. Redefining the Speed of Light and Atomic Clock Standards==


Like clockwork, the universe lives by the equation c = l_P/t_P = Z₀/μ₀ as space-itself emerges as a point becoming a 1-quantum sized unit sphereHowever, as expressed in SI units we perceive this a Planck Spherical Unit (PSU).  Made famous by Nassim Haramein who initially thought its radius was half-a-Planck Length.  However, to me the universe "knows" the number 1 and how 1 relates to all of mathematics.
==3.1. The Quadra-Polar Photon and the Quantum Harmonic Diagram==
One of the most striking predictions of Cosmological Relativity is the realization of the quadra-polar photonRather than to "think" of a photon as a particle -- we come to realize it is an ever expanding electromagnetic packet (in the form of angular momentum) which spreads forth at exactly the rate the surface area of the universe increases in the local reference frame.    (Figure 1). This diagram, which represents fundamental quantum wave number oscillations, reveals a surprising connection between the speed of light and the Impedance of Space, suggesting a deep connection between these seemingly disparate quantities.


A unit circle has a radius of 1 as does the amplitude of the sine and cosine functions. This idea scales nicely with "how" the universe quantizes time. The equation is quite simple: τ_now = τ + sin(τ). Plotting this reveals a curvy stair step pattern. In this diagram that the forward leaning stair steps. This is the pathway that gravitons follow say, from west-to-east whereas gravitons from east-to-west are the opposite staircase.
This amazing realization emerges from recalibrating our [meter] & [second] so the quantum wave numbers for c couple to the quantum wheel work of nature. These Quantum Harmonic Diagrams challenge our conventional understanding of light as a simple, bipolar wave. Instead, it suggests that the photon has a multi-dimensional structure with specific quantum-coupling woven into the fabric of space-time itself.   Note


The big-X portion of these butterfly wings represent the stairstep pathway where photons live. The plateau portion is where EM-wavefunction collapse happens. This flat image ought to be 3D. The big-X ought to be rotated out of the page along the time axis.
==3.2. Proposed Re-calibration of the Speed of Light and Cs133 Frequency==
The proposed adjustments to the speed of light and the Cs133 hyperfine spectral line frequency are not mere numerical tweaks, but rather represent a fundamental shift in our understanding of the nature of space-time and its relationship to matter and energy. By recalibrating these constants with the wheelwork of nature, Cosmological Relativity provides a new framework for unifying the laws of physics across all scales, from the subatomic to the cosmic.
[[file:Speed_ofLight_c_13_29_Zo377_71.png|1440px]]
Moreover, the specific values of these adjustments, such as the factorization of the revised speed of light into 29*71*145601 and the Cs133 frequency into 7*71*2341*7901, reveal deep connections between these constants and fields.  For example, the appearance of the prime factors 29 in the speed of light and the Impedance of Space connects both to the role that the 377 Ohms plays in regulating for flow rate of time itself.    Again, by choosing to calibrate Cs133 frequency so that it couples with 71 will make our atomic clocks phase-lock with this most stable quantum-wave number which the Speed of Light also shares.


Note that between 11th and 12th time quantum Impedance phase time slows to 0.706 units of angular momentum - a fraction of hBar but still ONE whole radian of rotation. This is one subtle yet profound manifestation of the Fine-Structure constant being scrutinized at the quantum-scale.  Notice what happens as the universe reaches 12-hBars worth of rotation...
quantum-coupling wave numbers of the electron, proton, and neutron (see Table 2).


These realizations are of profound significance.
>>>Table 2 goes here<<<


┌───┬──────────────────────────────────────────────────────────────────────────┐
==4. Implications for Cosmology and Quantum Mechanics==
│div│    1          2            3            4           5          6      │
│by:│    7          8            9          10          11        12      │
├───┼──────────────────────────────────────────────────────────────────────────┤
│ 2π│ 0.159154943 0.318309886  0.477464829  0.636619772 0.795774716 0.954929659│
│---│ 1.114084602 1.273239545  1.432394488  1.591549431 1.750704374 1.909859317│
└───┴──────────────────────────────────────────────────────────────────────────┘
1.909856 is the ratio of the volume of a sphere to the volume of the cube which contains it.
It is like during the 12-time quanta the sphere spreads fourth to fill the volume of the cube.
Thus, the spherical universe expands out to fill the volume of 3D Euclidean space!  Thus, Alan Guth's Inflationary epoch (where it was postulated that the universe rapidly expanded to being flat.) did not happen once at the beginning of time, but it happens incrementally every 12-time quanta.


These realizations are of profound significance.  
==4.1. Challenging the Assumptions of Flat Spacetime==
The framework of Cosmological Relativity challenges the long-held assumptions of flat spacetime and the constancy of physical quantities. By proposing a new understanding of space-time as an emergent property, arising from the collective behavior of quantum entities, it opens up new avenues for exploring the nature of the universe and its fundamental building blocks.


Please take time to ponder this discovery. Really think this through -- make it your own.
One of the most significant implications of this framework is its potential to resolve long-standing puzzles in cosmology, such as the nature of dark energy and dark matter. By allowing for the possibility of evolving metrics and changing constants, Cosmological Relativity provides a new lens through which to view these phenomena, one that may ultimately lead to a more unified and coherent understanding of the cosmos.


==Calibrating our SI units for Speed of Light to phase-lock with the quantum properties of the Cosmos. ==
==4.2. A New Perspective on the Nature of Space-Time==
At a deeper level, Cosmological Relativity offers a new perspective on the nature of space-time itself. Rather than being a fixed, immutable backdrop, space-time is seen as a dynamic, evolving entity, shaped by the complex interplay of quantum processes. This view has profound implications for our understanding of gravity, as it suggests that the curvature of space-time may not be a fundamental property, but rather an emergent one, arising from the collective behavior of quantum wave numbers.


[[File:164radian QuantumCalibratedSpeed_ofLight_656c=2pi.png|1024px||Quantum-Calibrated Speed of Light and Phase-Locked Impedance of Space]]
Moreover, the identification of specific quantum-coupling wave numbers for the electron, proton, and neutron (Table 2) hints at a deeper level of structure underlying the fabric of space-time. These wave numbers, which govern the interactions between matter and the electromagnetic field, may provide a key to unlocking the secrets of quantum gravity and the unification of the fundamental forces.


Each time quantum the photon spreads forth in all 4 of these polarities by 1-Planck length. The photon processes one-quarter phase every 164-time quanta revealing the quadra-polar geometry of photons.  Keep doing this and every 299,792,459 this phase locks our calibrated Speed of Light to the quantum wheelwork of nature.
>>>Insert any additional relevant figures or tables<<<
 
* https://truecosmology.info/blog/f/fine-structure-constant-how-do-physicists-compute-it
 
Welcome to my brave new universe.  One which dares to question the fundamental precepts of scientific thought. Go ahead, ask Albert, "Curiosity has its own reason for existing."  Would you like a deeper understanding of Cosmology?  Please see: TrueCosmology.info

Latest revision as of 11:36, 14 May 2024

John Wsol ∞  User Page ☀  Exploring the Linguistic Multiverse ☀  Quantum Cosmology Summary ☀  Comparing Stars and Atomic Scales ☀  Review of the High Counsel ☀ 

This post starts to expand upon the unveiling of my Cosmic Onion Model and the foundations of Cosmological Relativity. This unveiling will emerge from 4 papers to be published to the scientific community and a series of blog posts targeting a broader audience.

JWsol Blog Posts

With lots of iterative interactions with the AI here is the 1st of 4 scientific papers intended to deliver a seismic impact akin to Einstein's 1905 and 1915 papers.

Title: Foundations of Cosmological Relativity: Redefining Space~Time and Physical Constants

Abstract

In this groundbreaking paper, we introduce Cosmological Relativity with its novel Cosmic Onion framework confronting the prevailing assumptions of flat spacetime -- where most physical quantities were believed to all be constant. Herein, we introduce the key distinction between "absolute" quantum metrics versus our "emergent" SI metrics. We propose a new understanding of the nature of space-time and its relationship to fundamental constants.

Cosmic time is curled up at the Planck-scale and, with its uncurling, it spreads forth to create our local reference frame of Euclidean space. It will be shown (in no uncertain terms) that the universe and everything in it is expanding, including the length of a meter and duration of a second. Contrary to century old teachings, this astonishing assertion means every atom also expands. This paper proves these bold assertions.

This framework, literally, weaves the concept of quantum wave numbers into the fabric of Space~Time -- these ideas define the foundations of Cosmological Relativity -- which comes with a promise -- it completes Einstein's Special & General Relativities by unifying them with this astonishingly simple perspective of quantum mechanics.

With a slightest calibration to the "accepted" values of the speed of light and Cesium 133 hyperfine spectral frequency. We present a revised table of physical quantities. The implications of these findings for cosmology, quantum mechanics, and the unification of fundamental forces are discussed, setting the stage for a paradigm shift in our understanding of the universe.

==Table of Contents==
1. Introduction 
   ▪ 1.1 Limitations of & issues with Flat Spacetime 
   ▪ 1.2 Quantum vs. Emergent Metrics
2. Quantum Wave Numbers and Fundamental Constants 
   ▪ 2.1 The Revised Table of Physical Quantities 
   ▪ 2.2 The Significance of the Calibration Note
3. Redefining the Speed of Light and Atomic Clock Standards 
   ▪ 3.1 The Quadra-Polar Photon and the Quantum Harmonic Diagram 
   ▪ 3.2 Proposed re-calibration of the Speed of Light and Cs133 Frequency
4. Implications for Cosmology and Quantum Mechanics 
   ▪ 4.1 Challenging the Assumptions of Flat Spacetime 
   ▪ 4.2 A New Perspective on the Nature of Space~Time
5. Conclusion 
   ▪ 5.1 Towards a Unified Understanding of the Universe 
   ▪ 5.2 Future Directions for Cosmological Relativity

1. Introduction

1.1. Limitations of & Issues with Flat Spacetime

For over a century, the prevailing paradigm in physics has been based on the assumption of flat spacetime, a four-dimensional continuum in which the laws of physics are believed to operate uniformly. This paradigm, which emerged from the success of Einstein's special and general relativity, has led to remarkable advances in our understanding of the universe, from the subatomic realm to the large-scale structure of the cosmos.

However, as our knowledge has expanded, so too have the inconsistencies and paradoxes that arise from the assumption of flat spacetime. The puzzle of dark energy, the mystery of dark matter, and the incompatibility between quantum mechanics and general relativity all point to the limitations of this paradigm. It is becoming increasingly clear that a new framework is needed, one that can account for these phenomena and provide a more unified understanding of the universe.

1.2. Quantum vs. Emergent Metrics

At the heart of the limitations of flat spacetime lies the failure to distinguish between quantum and emergent metrics. In the standard paradigm, space-time is treated as a fixed, immutable backdrop against which physical processes unfold. However, this view overlooks the fundamental nature of space-time as an emergent property, arising from this newly discovered "clockwork" nature of quantum phenomena. No longer will quantum mechanics be purely a probabilistic phenomena.

God does not play dice with the universe.  -- Albert Einstein

In the framework of Cosmological Relativity, we propose that the metrics of space-time are not fundamental, but rather emerge from the collective behavior of quantum entities. This shift in perspective has profound implications for our understanding of the universe, as it suggests that the properties of space-time, such as its geometry and the values of fundamental constants, are not fixed and immutable, but rather are a function of the age of the universe.

2. Quantum Wave Numbers and Fundamental Constants

2.1. The Revised Table of Physical Quantities

Central to the framework of Cosmological Relativity is the concept of quantum wave numbers, which represent the fundamental frequencies at which quantum entities oscillate. These wave numbers are intimately connected to the values of fundamental constants, such as the speed of light and the fine-structure constant, and provide a new lens through which to view the nature of physical reality.

In Table 1, we present a revised table of physical quantities, which incorporates the insights of Cosmological Relativity and proposes new values for several fundamental constants. Most notably, we propose a slight adjustment to the speed of light, from its current value of 299,792,458 m/s to 299,792,459 m/s, based on the alignment of this value with the quantum harmonic diagram (see Figure 1). Throughout the rest of this document when a value is highlighted: The yellow highlighted numbers are CODATA 2018 values. Green values are defined by CODATA 2019 as exact and are the basis to calibrate [meters], [seconds], [kilograms] and [Coulombs]. α is ascribed uncertainty = 0.5e_16 to account for double precision floating point limit..

Cyan highlighted quantities, throughout this document, are my proposed values for the CODATA 2022 dataset.

Calibration Note

Calibration Note future measurements: gauged against these numbers will tell us which day (between 2015 & 2020) these exact values matched reality -- higher power ratios will vary the most. Note dt column: 0 means that value is constant throughout time. dt=1 values grow linearly, whereas _1 (negative 1st power) values shrink as the reciprocal of our linear time perceptions. Likewise, ±2nd power growth and its inverse change more rapidly. Future Measurements should include: (1) date-time stamp, (2) longitude, latitude & (3) elevation. These factors in: (1) Cosmological Relativity, (2&3) Special & General Relativity

2.2. The Significance of the Calibration Note

The proposed adjustments to the values of fundamental constants, such as the speed of light and the Cs133 hyperfine spectral line frequency (from 9,192,631,770 Hz to 9,192,631,777 Hz), are not arbitrary. Rather, they are based on a careful analysis of the relationships between these constants and the quantum wave numbers that weave into the fabric of space-time.

In particular, the calibration note in Table 1 highlights the significance of these adjustments, as it suggests that future measurements of the fine-structure constant and the masses of atoms could serve as a test of Cosmological Relativity's predictions about the evolution of emergent metrics over cosmic time. This provides a powerful means of validating the framework and exploring its implications for our understanding of the universe.

3. Redefining the Speed of Light and Atomic Clock Standards

3.1. The Quadra-Polar Photon and the Quantum Harmonic Diagram

One of the most striking predictions of Cosmological Relativity is the realization of the quadra-polar photon. Rather than to "think" of a photon as a particle -- we come to realize it is an ever expanding electromagnetic packet (in the form of angular momentum) which spreads forth at exactly the rate the surface area of the universe increases in the local reference frame. (Figure 1). This diagram, which represents fundamental quantum wave number oscillations, reveals a surprising connection between the speed of light and the Impedance of Space, suggesting a deep connection between these seemingly disparate quantities.

This amazing realization emerges from recalibrating our [meter] & [second] so the quantum wave numbers for c couple to the quantum wheel work of nature. These Quantum Harmonic Diagrams challenge our conventional understanding of light as a simple, bipolar wave. Instead, it suggests that the photon has a multi-dimensional structure with specific quantum-coupling woven into the fabric of space-time itself. Note

3.2. Proposed Re-calibration of the Speed of Light and Cs133 Frequency

The proposed adjustments to the speed of light and the Cs133 hyperfine spectral line frequency are not mere numerical tweaks, but rather represent a fundamental shift in our understanding of the nature of space-time and its relationship to matter and energy. By recalibrating these constants with the wheelwork of nature, Cosmological Relativity provides a new framework for unifying the laws of physics across all scales, from the subatomic to the cosmic.


Moreover, the specific values of these adjustments, such as the factorization of the revised speed of light into 29*71*145601 and the Cs133 frequency into 7*71*2341*7901, reveal deep connections between these constants and fields. For example, the appearance of the prime factors 29 in the speed of light and the Impedance of Space connects both to the role that the 377 Ohms plays in regulating for flow rate of time itself. Again, by choosing to calibrate Cs133 frequency so that it couples with 71 will make our atomic clocks phase-lock with this most stable quantum-wave number which the Speed of Light also shares.

quantum-coupling wave numbers of the electron, proton, and neutron (see Table 2).

>>>Table 2 goes here<<<

4. Implications for Cosmology and Quantum Mechanics

4.1. Challenging the Assumptions of Flat Spacetime

The framework of Cosmological Relativity challenges the long-held assumptions of flat spacetime and the constancy of physical quantities. By proposing a new understanding of space-time as an emergent property, arising from the collective behavior of quantum entities, it opens up new avenues for exploring the nature of the universe and its fundamental building blocks.

One of the most significant implications of this framework is its potential to resolve long-standing puzzles in cosmology, such as the nature of dark energy and dark matter. By allowing for the possibility of evolving metrics and changing constants, Cosmological Relativity provides a new lens through which to view these phenomena, one that may ultimately lead to a more unified and coherent understanding of the cosmos.

4.2. A New Perspective on the Nature of Space-Time

At a deeper level, Cosmological Relativity offers a new perspective on the nature of space-time itself. Rather than being a fixed, immutable backdrop, space-time is seen as a dynamic, evolving entity, shaped by the complex interplay of quantum processes. This view has profound implications for our understanding of gravity, as it suggests that the curvature of space-time may not be a fundamental property, but rather an emergent one, arising from the collective behavior of quantum wave numbers.

Moreover, the identification of specific quantum-coupling wave numbers for the electron, proton, and neutron (Table 2) hints at a deeper level of structure underlying the fabric of space-time. These wave numbers, which govern the interactions between matter and the electromagnetic field, may provide a key to unlocking the secrets of quantum gravity and the unification of the fundamental forces.

>>>Insert any additional relevant figures or tables<<<