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- Total Lesson: 13
- Course length: 6 Hrs
- Course level: Advanced
- Author: MOHAMED HAJ YOUSEF

Price: Free

Students Enrolled: 0

Ibn Arabi (rh) and Quantum Relativity

How to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 1 – Quantum Relativity - Introduction and Outline

This the introduction of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory

Lesson 2 – The major unsolved problems in physics and cosmology

The major (un)solved problems in physics and cosmology, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory

Lesson 3 – The single monad model of the cosmos

Introducing the Single Monad Model, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 4 – Duality of time postulate

Introducing the Duality of Time Postulate, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory

Lesson 5 – Why the speed of light is Constant and Invariant?

The constancy and in variance of the Speed of Light, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 6 – Vacuum, Super Symmetry and the Two Arrows of Time

Super-Symmetry and the TWO Arrows of Time Postulate, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 7 – Deriving the Proper Time and Lorentz factor

Deriving the Proper Time and Lorentz Factor, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 8 – Aether and the cosmological constant problem or vacuum catastrophe

Aether and the cosmological constant problem or vacuum catastrophe, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 9 – The Origin of Mass and Yang Mills and Mass Gap

The origin of mass and Yang-Mills existence and mass gap, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 10 – General Relativity Approximation

General Relativity approximation, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 11 – Deriving the Mass Energy Equivalence E = mc2

Deriving the Mass-Energy equivalence E=mc^2, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 12 – Complex and Multi Dimensional Energy

Complex and Multi-Dimensional Energy, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

Lesson 13 – Fractal Complex Time and the Logical Interpretation of Quantum Mechanics

Fractal Complex-Time and the logical interpretation of quantum mechanics, as part of the long presentation on how to derive the principles of Quantum Relativity from the Single Monad Model Model of the Cosmos and Duality of Time Theory - by Mohamed Haj Yousef.

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