The Duality of Time Theory, that results from the Single Monad Model of the Cosmos, explains how physical multiplicity is emerging from absolute (metaphysical) Oneness, at every instance of our normal time! This leads to the Ultimate Symmetry of space and its dynamic formation and breaking into the physical and psychical (supersymmetrical) creations, in orthogonal time directions. General Relativity and Quantum Mechanics are complementary consequences of the Duality of Time Theory, and all the fundamental interactions become properties of the new granular complex-time geometry, at diifferent dimensions. - => Conference Talk [Detailed Presentation]
... ant speed of creation, or in general: . See also Figure 5, and also Figure 6.1. Using the concept of split-complex time, we can easily derive Lorentz factor for example by calculating the proper time as it can be readily seen from Figure 5, which is replicated in Figure 6.1 that repres ...
... _i < t_r. So because t_i is interrupting and delaying t_r, the actual (net value of) time is always smaller than the real time: |t_c|=sqrt{t_r^2-t_i^2} < t_r, and this is actually the proper time as defined in Special Relativity. The Two Orthogonal Arrows of Time However, it should b ...
... dius forms a black hole, as we shall describe below. In space-time coordinates, with signature, the line element for the Schwarzschild metric takes the form: (3.11) When is positive, is the proper time, where is the time coordinate, is Lorentz factor, is the radial coordinate, is the colat ...
... d of creation, or in general: . See also Figure I.4, and also Figure III.1. Using the concept of split-complex time, we can easily derive Lorentz factor for example by calculating the proper time as it can be readily seen from Figure I.4, which is replicated in Figure III.1 tha ...
... variant speed of light, or in general: . See also Figure 5.1, and also Figure 5.3. Using the concept of split-complex time, we can easily derive Lorentz boost for example by calculating the proper time as it can be readily seen from Figure 5.1, which is replicated in Figure 5.3 that repres ...
... y and Perpetual Creation of Space by Mohamed Haj Yousef Search Inside this Book 5.2.4 The Arrow of Time This essential characteristic, that imaginary time is negative with relation to proper time, is what makes time restricted into one direction, because it means that can never excee ...
... (1) So because is interrupting and delaying , the actual (net value of) time is always smaller than the real time: , and this is actually the proper time as we shall see in equation 3. However, it should be noted here that, unlike the case fo ...
... . (1) So because t i is interrupting and delaying t r , the actual (net value of) time is always smaller than the real time: ∥ t c ∥ = t r 2 − t i 2 ≦ t r , and this is actually the proper time as we shall see in equation 3 . However, it should be noted here that, unlike the case f ...
... Thus, we can write: (2.1) So because is interrupting and delaying , the actual (net value of) time is always smaller than the real time: , and this is actually the proper time as we shall see in equation 2.3. However, it should be noted here that, unlike the case ...
... erience does not necessarily rule out other geometries. The geometrization conjecture gives a complete list of eight possibilities for the fundamental geometry of our space. 5.2.3 The Proper Time We can clearly see from Figure 5.1 that space-time intervals can be obtained from: , or ...
... Space Transcendence Read this short concise exploration of the Duality of Time Postulate: DoT: The Duality of Time Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... Space Transcendence Read this short concise exploration of the Duality of Time Postulate: DoT: The Duality of Time Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... Time Postulate: DoT: The Duality of Time Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... rupting and delaying the real flow of time that is creating space and matter: , so the actual (net value of) time is always smaller than the real time: . Read Other Books: The SINGLE MONAD MODEL of the Cosmos: Ibn Arabi's View of Time and Creation The Duality of Time Theory: ...
... Space Transcendence Read this short concise exploration of the DUALITY OF TIME Postulate: DoT: The DUALITY OF TIME Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... ; Read Other Books: The Single Monad Model of the Cosmos: Ibn Arabi's View of Time and Creation The Duality of Time Theory: Complex-Time Geometry and Perpertual Creation of Space The ULTIMATE SYMMETRY : Fractal Complex-Time and Quantum Gravity The Chest of Time: Particle-Wave Duality ...
... in lower dimensions: , , , , as we shall discuss further in section 4. The concept of imaginary time is already being used widely in various mathematical formulations in quantum physics and cosmology, without any actual justification apart from the fact that it is a quite convenient mathem ...
... scendence Read this short concise exploration of the Duality of TIME Postulate: DoT: The Duality of TIME Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... nsions, as the plane, and we will mostly consider the axis only for simplicity. In reality, however, we can conceive of at least seven levels of time, which curl into the four dimensions of space-time: , that are the three spatial and one temporal dimensions; since each spatial dimension i ...
... Space Transcendence Read this short concise exploration of the Duality of Time Postulate: DoT: The Duality of Time Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
... semi-complex, or split-complex, but in this book, unless otherwise stated, imaginary and complex refer to these hyperbolic numbers . Hyperbolic geometry was used in the early formulation of SPECIAL RELATIVITY to represent Lorentz boost as a rotation in the imaginary plane, but it will be s ...
... ll be shown that Riemannian geometry on is an approximation of this complex-time Euclidean geometry on . This approximation, that lead to the non-Euclidean Minkowski space-time continuum of GENERAL RELATIVITY , is necessary only when we consider the dimensions of space to be existing togeth ...
... y of Time, however, since space is now the real time, the normal time itself becomes genuinely imaginary. Employing imaginary time is very useful because it provides a method for connecting QUANTUM MECHANICS with statistical mechanics by using a Wick rotation, by . In this manner we can fi ...
... dynamic and granular complex time, that results from the Duality of Time Postulate, leads to the three principles of Relativity all at once. Therefore, in addition to making gravity a true quantum field theory, other fundamental interactions could be also represented in terms of this spac ...
... ex time is: , as split-complex or hyperbolic number. This Duality of Time model brings back the same classical concept of aether but in a novel manner that does not require it to affect the speed of light, since it is now the background space itself, rather than something in the background ...
... e continuous background space with physical dimensions. It is this approximation that lead to General Relativity, but Quantum Gravity can not be achieved without taking into account the new symmetry of this granular complex-time geometry, which is also capable of explaining the other funda ...
... Space Transcendence Read this short concise exploration of the Duality of Time Postulate: DoT: The Duality of Time Postulate and Its Consequences on General Relativity and Quantum Mechanics ...
I have no doubt that this is the most significant discovery in the history of mathematics, physics and philosophy, ever!
By revealing the mystery of the connection between discreteness and contintuity, this novel understanding of the complex (time-time) geometry, will cause a paradigm shift in our knowledge of the fundamental nature of the cosmos and its corporeal and incorporeal structures.
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Mohamed Haj Yousef
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