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Quantum Electrogravitational Mechanics

Electrogravity Dimensions

Don't worry if you are confused by the animation. The motions involve interacting dimensions of both positive and negative Real space, as well as both positive and negative Imaginary space. However, as intricate as it is, Complex Arithmetic can create some of the most fascinating graphs and animations of all mathematics. But by using this geometric model of Cook's design, the same beauty can be visualized physically with certain non-dimensional tweaks.

Let me begin to lay out what is involved in the animation.

electrogravity dimensions

We'll start with m1 & m2, which are two arbitrary spherical masses. The animation focuses on the spherical mass located in the middle. From our perspective, we see both Real and Imaginary dimensions revolving around it. However, the same would appear if we focused on the other mass, regardless of which mass is greater. Let's give the two masses some values in kg to put things into focus. Let m1 = 893 kg and m2 = 1317019776 kg. It matters little which object above is m1 or m2, nor does it matter their radii, as we are only interested in there centers of gravity for this geometric model. Their distance apart r will be difficult to explain just yet, so let us ignore that for the time being, other than that it is exactly 7.0685834... m in this case.

The gravitational force between the two masses is defaulted (for this animation) as N = pi / 2 = 1.5707963... kg m s^-2. When the force of gravity is set to this value, the geometric representation above becomes clear. However, animations will follow involving other values of force than this but it is a fine place to begin.

Please note: in the animation the distance between the two centers of gravity is fixed, so one can focus on other aspects of this model. While it may appear that they are moving to and fro, that is only because of the rotation of the other dimensions.

The dimensions of Newtonian Force is of course in kg m s^-2. However, in this model there are three different times and thus three different frequencies involved in the motions of the animation, as well as three different fields (electric, magnetic and gravitational). One of these frequencies is pointed out in the image above, where it has the exact relative geometry of a one-dimensional line extending from the vertical lines between the two masses' centers of gravity. But let's start backward and refer to it as f_3 in hertz. And the value in this case is exactly 1.5 hertz. Thus, the inverse t_3 = .6666666... s.

The entire length of the one-dimensional pink dashed line, including f_3 in its construction, has the exact geometric relationship of the inverse of velocity = 3 s m^-1 = 2 * pi * f3^3 / r, which was derived from velocity = h * f^3 / I_e, where h is Planck's Constant and I_e is the Electrogravitational Interval in J s^-1 m^-1. I won't go into the entire analysis here in order to get to the point, but if you have any questions, feel free at any time to email Mr. Cook.

space

Next, one may be wondering what exactly is the meaning behind the rectangle in the drawing. This, my friends and foes, is the Gravitational Augmentation of Space in m N^-1. It is represented as a two-dimensional rectangular area. Mathematically, it encompasses both postive and negative Real space.

An equivalent area can be represented directly below it for an Imaginary augmentation, as well. However, it was left out in the animation, as the only visible space between the two masses exists in the Real region.

This dimension m N^-1 is anagolous to a brane in String Theory, a two-dimension plane that spins, rotates and stretches in time and space in relation with gravitational force, distance and the like, and always has the dimensions of distance per force in the New Electrogravity Theory.

gravitational augmentation space

For sake of simplicity, I will refer to the vertical line constructing the Augmentation of Space as L for length and the horizonal line as W for width, so long as one remembers their dimensions when studying this further.

Now, the distance between the two masses' centers of gravity consists of a one-dimensional line that when curled into a spring-like formation comprises the surface area of a logarithmic cone whose vertical cross section is contained within the Augmentation of Space; thus, a ray of light passing from one mass to the other travels in a spiral for this model and the Augmentation of Space rotates accordingly.

distance cone

The equations for this distance between the two masses' centers of gravity are as follows:

r = Sqrt { G * m1 * m2 / N }

r = 2 * pi * f_3^3 / L

Where G is Newton's constant.

And for the Augmentation of Space...

A_e = r / N

A_e = ( 2 * f_3 )^2 / 2

Thus, our Gravitational Potential Energy is...

E = N * r

Whose value is exactly 1/3 of the area of either circle in the first image at the top of this page when N = pi / 2, and generally is considered having a negative value. And if we extend these circles together for all 360 degress it forms a torus. This torus can be calculated when N = pi / 2 as the following:

Ta = ( Or + Ir ) * pi^2 * ( Or - Ir )

Ta = ( 4 * f_3^2 * pi^2 )^-1

Thus, our first time t_1 is as follows:

t_1 = L * r * pi

t_1 = W * A_e

t_1 = r^2 * W / E

Our second time t_2 is then...

t_2 = pi * r^2 * W / E

t_2 = t_1 * pi

We get a time factor x...

x = t_1 / t_3

Where we can calculate the number of photons needed to provide the energy of the motions...

h' = E * t_1

h' = x * Ta / ( 8 * f_3 )

# photons = h' / 6.6260690...E-34 = 1.1310976...E+35 photons

Where h is Planck's constant.

Importantly, h' = another torus area just inside the larger torus, where one sees the yellow negative energy 2-D circle inside that increases and decreases in size with X-Wave progressions in accordance with the NET. The only moment the energy circle increases beyond the inner torus boundary is when a graviton passes out of Real space through the center of a mass' gravitational field. When this occurs for a single graviton, a photon enters Real space tangent to the circumference of the circle in order to maintain the Laws of Thermodynamics. This extra energy is exactly 1/6th the area of the above circles and thus 1/2 the energy of the system...ZPE. Because it exists outside the realm of h' it consists of cold, 'negative-energy' photons. In the same, when a graviton enters Real space from the Imaginary space, a hot, 'positive-energy' photon exits Real space, tangent to the circumference of the circle. Thus, the entire universe is always decreasing in temperature.

Note: there are no photons shown in the current animation as of yet only the amount of energy.

Now, if h' = the torus area, which contains all the photons present in the model, what exactly is the larger torus?

Why it is g', which contains the exact number of gravitons, which must, in accordance with the NET = the number of photons.

g' = h' / alpha

Where alpha is the fine structure constant.

Thus, a constant g = h / a in kg s, where h is in J s. The value of g = 9.080098E-32 and follows from Cook's Quantum Gravity in accordance with the NET.

Thus, the exact # gravitons (carrying the gravitational force) = # photons (carrying the magnetic force) = # charged particles (carrying the electric force)! It's quantized. However, only one graviton and one charged particle is included in the animation to keep things visually simplified.

 

orbits

So let's now list the interactions:

* When a charged particle enters Real space, the X-wave's amplitude = zero, as no photons or gravitons are either exitting or entering Real space.

* When a graviton approaches Real space and the charged particle, the amplitude of the X-wave increases.

* When a graviton enters Real space through the center of gravity of a certain mass, a charged particle exits Real negative space to positive Real of another system and a photon travels from Real space to Imaginary space carrying zero net charge, but raising the amplitude of the X-wave.

* As the graviton passes out of Real space through the other mass' center of gravity, a sudden burst of negative energy enters the system for a fraction of a second, allowing a single cold photon to enter Real space (Zero Point Energy) along the zero Real axis. The heavier the mass that the graviton exitted through, the higher the frequency of the light wave carrying the photon that enters

* The charged particle then enters Imaginary space of a separate system's quadrant and the amplitude of the X-Wave is reduced to zero.

* The cycle then repeats.

Now, let's revisit the animation to view the interactions once again...

 

 

 

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