4. Derivation of Equations
Completing the derivation of the laws resulting from quantum relativity ( quantum world )
This is derivation number 1
is the Phase Velocity
This is derivation number 2
is the gravitational coefficient for Phase Velocity
,
, ,
is the special quantum relativity for , is the quantum kinetic energy for
is the energy-momentum tensor for
This is derivation number 3
,
, ,
is the special quantum relativity for , is the quantum kinetic energy for
is the energy-momentum tensor and
This is derivation number 4
This is derivation number 5
, ,
This is derivation number 7
Whererepresents the Einstein tensor for, is the energy-momentum tensor
,
,,
,
,,
,
,,
,,,
My equations allow us to solve these problems:
The singularity problem: Since n = 1 represents the David quantum medium in which Planck's laws operate, such as Planck density and Planck curvature, the material is not allowed to be compressed beyond the Planck volume, and we conclude that singularities do not occur.
Solving the Big Bang problem: The equation assumes that if n = 1, meaning the refractive index of the medium obeys Planck's laws, then== c. In this case, the universe would have Planck density, Planck volume, and Planck curvature. There would be no singularity at the moment of the Big Bang due to a disturbance in the refractive index, causing n ≠ 1. This led to the separation of from
i.e.,≠. As a result of this separation, matter that followsemerged, and the radiation that followsappeared.
Solves the mystery of dark matter: Since the law depends on and , any slight change in the refractive index alters the gravitational force. We don't need additional mass; rather, this force is a result of the effect of the refractive index ofand, which alters the speed and thus leads to an effect on gravity.
Solving the Dark Energy Problem: Since the phase velocityis decoupled from the group velocity. Since the phase velocity can exceed the speed of light depending on the medium (≠), the expansion of the universe is the propagation of phase waves in a Planck medium. Therefore, dark energy is the refractive index pressure resulting from the medium's attempt to return to n=1.
Solving the information paradox: Since n=1 prevents singularity, information does not disappear but is stored in vibrations within the Planck medium inside the Planck point (David's center), where singularity does not occur. It can escape through a disturbance in the refractive index, forming Hawking radiation.
Agreement with quantum mechanics, where spacetime is treated as a wave because it is affected by the refractive index ofandin the field equation.
is the fine-structure constant is the Effective Nuclear Charge, n is the energy level, C is the speed of light, Effective Group Velocity of the Electron, Effective phase Velocity of the Electron
is the David's Kinetic Energy and Energy Equivalence
is the David's Force and Energy Equivalence
1.Temporal Curvature (Zero Curvature Condition)
At the Planck scale, the temporal component of the Einstein tensor vanishes due to the exact cancellation between energy density and the cosmological constant.
Formula:
Physical Significance: This represents a state of “temporal flatness,” preventing the formation of a singularity.
2. Spatial Curvature (Expansionary Curvature)
Unlike the temporal component, the spatial components involve the addition of vacuum energy and material pressure, driving an explosive outward metric expansion.
Formula:
Physical Significance: This provides the geometric “push” required for the Big Bang, where the curvature is purely directed into expanding the volume of space.
3. Expansion Dynamics (Hubble Parameter)
Formula:
Physical Significance: The universe doubles its size every seconds, marking the highest possible frequency of cosmic expansion.
4. The physical scale of the universe starting from the Planck length
The evolution of the cosmic size over time follows an exponential growth curve due to the constant energy density at the instant of Planck equilibrium.
Formula:
5. Variable Energy Density
As the scale factor a(t) increases, the energy density dilutes according to the Stefan-Boltzmann.
Formula
Physical Significance: This dilution is what eventually breaks the equilibrium, allowing gravity to reappear and matter to condense into stars and galaxies.
6. Refractive Index Evolution (n)
“Optical Rigidity” of spacetime is linked to the energy density.
Formula: ,
n > 1
Since the product of the two velocities is c², relativity will shift to a Planck medium because the result is c². This occurs because there are two mediums: one interacts with the phase velocity and not the group velocity due to the separation of the group velocity from the phase velocity. While the other interacts with the group velocity and not the phase velocity due to the separation of the phase velocity from the group velocity.
So that the result of the two means equals 1 when we divide them together, in the case of the equation that includes them.
In some media, such as Epsilon-Near-Zero (ENZ), this phenomenon occurs. It happens at a plasma frequency that affects the phase velocity, making it faster than light, thus causing the resultant to be greater than c².
Quantum length of David
is the Phase Velocity
,,
David's velocity of the stationary phase
David's Quantum Pressure
David's Momentum Quantity
is the David's Force and Energy Equivalence
The fine structure constant determines the balance and interaction between two worlds: the world of particles and waves and the world of large objects, i.e., it is the separator.
,
The fine structure constant determines the balance and interaction between two worlds: the world of particles and waves and the world of large objects, i.e., it is the separator.
,
Quantum block of David
DQ=ℏ⋅Gp GPg GP 3=ℏ⋅Gp⊗g 3=ℏ⋅Gp ⊗ g 3=ℏ⋅G⋅o3kc3
Quantum length of David
Quantum time of David
David's Quantum Energy
David's quantum temperature
David's Quantum Force
David's Quantum Acceleration
David's quantum density
David's Quantum Pressure
David's Momentum Quantity
is the David's Force and Energy Equivalence
The fine structure constant determines the balance and interaction between two worlds: the world of particles and waves and the world of large objects, i.e., it is the separator.
,
,
David's Quantum Force,is the reduced Planck constant,is the David's velocity of the stationary phase,is the Phase Velocity,David's Quantum Acceleration
is the David's Force and Energy Equivalence, n is the energy level,is the electron speed.
-
is the energy-momentum tensor
-
is the energy-momentum tensor
Is the energy-momentum tensor and
This data explains why gravity increases 16 times when an electron moves from orbit 1 to orbit 2 due to the group speed.
Meanwhile, we observe that spacetime expands 16 times due to the phase velocity, which is faster than the speed of light.
During a quantum jump, spacetime expands due to the phase velocity, and when it returns to its original state, it contracts due to the group velocity.
Or
Or
is the Phase Velocity
,,,
These are some equations after removing the speed of light and putting in the phase speed. The phase velocity was included because it became clear from the derivation, I made that from Einstein's perspecve on the speed of light he was focusing on the speed of light in a vacuum and did not consider other media such as water which affect the speed of light as Christian Huygens explained it and therefore this had to be into account in the calculations.
This will enable us to add the group velocity as a result of adding the phase velocity when the speed of light is constant.
, ,
or
,
Vacuum permittivity,Vacuum permeability
David's Einstein Force
m: mass
This equation demonstrates how the properties of the medium affect acceleration and mass. Consider two heavy metal spheres of equal mass dropped from the same height-one into a liquid and the other into the air. The equation shows that the liquid’s resistance reduces acceleration while the object acquires “added mass”, whereas the sphere falling through the air experiences acceleration, with the object’s effective mass decreasing due to the medium’s properties.
The electron generates a constant field while rotating around the nucleus, but when it gains energy, it generates a changing field. This explains why it has a torque resulting from the energy during the experiment. Therefore, if the electron is observed in its normal state without being excited, the electron will behave as a particle, and if it is excited, it will behave as a wave.
The Mössbauer effect proved that general relativity is true. Relativity explains that the fastest speed is the speed of light. However, if the Mössbauer effect differs depending on the medium it is in, due to the refractive index, then relativity will differ.
Metal-organic frameworks (MOFs) can trap molecules like water inside them. What if they were modified to trap electrons to provide electricity, neutrinos, nuclei, neutrons, or antimatter? This would ensure they exist to work on.
,
, ,
: Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
,
, ,
: Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
This equation represents a new perspective in terms of adopting the refractive index n = 1, which represents the maximum value for numerical values, namely Planck values, thus preventing access to infinite values.
depends on the phase speed and the group speed
,
This equation illustrates the shape of spacetime in relation to the particle's motion and a wave,
: Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
,
,, : Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
Where
represents the Einstein tensor , which is dependent on the and the after removing the speed of light, is the energy-momentum tensor , which is dependent on the and the after removing the speed of light.
,
,, : Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
Whererepresents the Einstein tensor , which is dependent on theand theafter removing the speed of light,is the energy-momentum tensor , which is dependent on theand theafter removing the speed of light.
This equation illustrates the shape of spacetime in relation to the particle's motion and a wave,
: Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
,
,, : Phase velocity in four dimensions (three spatial dimensions and one temporal dimension)
: Group velocity in four dimensions (three spatial dimensions and one temporal dimension)
Whererepresents the Einstein tensor , which is dependent on theand theafter removing the speed of light,is the energy-momentum tensor , which is dependent on theand theafter removing the speed of light.
This research demonstrates how the refractive index influences the curvature of spacetime and the deflection of light passing through quasar plasma. It further suggests that the singularity and the cosmological constant problem can be explained through the refractive index by treating the vacuum as a real medium composed of oscillations of the virtual particles observed via the Casimir effect.