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Оrigins of the material world
Оrigins of the material world
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Оrigins of the material world

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Оrigins of the material world

Георгий Попов

Оrigins of the material world

This book is the fourth in the series 'The Shadow of Truth, or The Unfinished Book'.


Just as every great river has its source, so too does the material world, despite its boundless diversity, have a specific origin. The origins of the material world lie in the Unified Energy of Creation (UEC). It is from this seemingly simple source that all the diversity of manifested material forms and phenomena flows.


What this book will discuss

This book examines the nature of material space and the peculiarities of its manifestation. It shows that at the base of material space and all material forms lies a single energy, which in a unified and continuous space is always in the process of transformation, shifting from one of its forms to another. Each of the two forms of this unified energy has two opposites, expressed in its properties. These properties are fundamental and manifest as centrifugal and centripetal.

The concept of the monad and the principle of the monad are introduced as a foundation and specificity of the transformation of the Unified Energy of Creation (UEC). It is shown that all manifestations and processes of the material world are subject and correspond to the principle of the monad.

The concept of the regenerator node of material forms is introduced. Based on this, the mechanism of the birth of basic material particles, atoms, suns, and planets is considered. The structure of Black Holes and Supernovae is examined. The nature of gravitational forces and the process of matter decay are discussed, exemplified by the gravitational degradation of basic material particles. The structure of basic material particles and the nature of their properties are considered. The nature of nuclear bonds is discussed. The nature of magnetic and electric properties is considered. The nature of magnetic and electric interactions is examined. The nature of the electric charge and the interaction of charged particles are discussed. The nature of the spin of a basic particle is considered. The nature of kinetic energy of motion, the nature of momentum, and the principle of inertia are discussed. The peculiarities of gravitational phenomena in the rotation of a material body are considered. The structure of the photon and the dynamics of its motion are examined. The nature of basic optical phenomena is considered. The mechanism of absorption and emission of a photon by an electron is discussed. The nature of bremsstrahlung is considered. The mechanism of phonon manifestation is examined. The nature of basic sound phenomena is considered. The concept of time and the concept of the present moment are discussed.


Introduction

The foundation of matter formation lies in the harmony of coexistence of all basic energies that constitute the Unified Energy of Creation – UEC. UEC exists on the principles of harmony of mutual necessity of opposites. Based on this, the entire material world and the movement of all its forms are constructed on these principles. The totality of the basic laws of the existence of the material world stems from the properties of the complementary energies of UEC. It is the harmony and mutual necessity of opposites that form the basis of the equilibrium of the manifested material world as a whole, which is reflected in the structure of UEC and the cycles of the monad as its forms of existence and transformation of one energy into its opposite. The basis of all reasoning and conclusions presented in this book is the continuous transformation of UEC, which occurs in space in accordance with a certain hypothetical structure of the monad. It is the structure of the monad, or the principle of the monad, that reflects all the features of UEC. The two opposite sides of the same UEC energy further lay the foundation for explanations and constructions of the entire picture of the material world, taking into account their centrifugal and centripetal properties. One of the energies of UEC is called alpha-energy (A), the other – beta (B). In the cycles of the monad, they have different directions of rotation, and therefore one of them can be called right-rotating (right), for example – A, and the second energy B – left-rotating (left). In all respects, they have identical but opposite properties. Thus, their centrifugal energies are oppositely directed and can reduce the disturbance of space when combined. Energy B and energy A each have two components – centrifugal (CB) and centripetal (CS). As a result, the centripetal is vortex-forming, and the centrifugal is a linear driving force. The names of these energy components are alpha-centripetal (ACS) and alpha-centrifugal (ACB), beta-centripetal (BCS), beta-centrifugal (BCB). In this case, the basic energies in the formation of particles are centripetal energies, and the centrifugal ones are subordinate to them.


Regarding the term 'vibrational properties'

The term 'vibrational properties' is introduced as a unifying concept. Vibrational properties refer to the manifestation of any forms of periodic motion – vortex, spiral, oscillatory, pulsating, complex repeating motion, that is, any motion that can be decomposed into harmonics."


Chapter 1. Material Space and the Material World


Living Space. The Two Basic Energies of Creation. The Monad of Material Space. Structure of the Monad. Structure of Material Space. Forms of Existence of the Energies of the Monad. Symmetry of Space. The Conditionally Manifested Monad. Properties and Relationships of the Basic Energies. Types of Space Disturbance. Extreme Disturbance of Space. Space and Its Properties.


Living Space

Space itself is alive and consists of basic energies that are in a state of eternal transformation, as forms of perpetual motion. The principle of the monad, which manifests in the continuous transformation of energy from one form to another, and from one state to another, underlies this motion. This cycle consists of four stages, during which energy passes through all stages of transformation, from centrifugal to centripetal state and back. This is a hidden mystical process of living space, embedded by the Creator or Intelligent Principle. Living space senses all its manifested energies, separately extracted from the cycles of the monad in the form of material particles, fields, and radiations. It senses conditionally manifested energies activated by particles. It reacts to any kinetic processes associated with the movement of manifested energies and participates in them through its conditionally manifested energies. Living space regenerates material particles, participates in the formation of suns, planets, and galaxies. The main principle of living space is the strive for such ratios of energies, in which the principle of equilibrium is realized according to the energies reflected in the cycles of the monad. The fundamental law of space's existence is the movement toward the original, undisturbed state through the process of annihilation of manifested and conditionally manifested energies, with their transition to the unmanifested state of space. Space is not a melt of energies, but a coexistence of absolutely balanced components, in an inseparable and continuous movement and interaction, under the condition of the monad principle. Living space pulsates, it is eternal, complete, and beyond dimensions.


The Two Basic Energies of Creation

The two basic energies that make up UEC, each having opposite states – centripetal and centrifugal, form a single cell of space according to the principle of the monad, in which both alpha and beta energies, passing through their cycles of transformation from centripetal to centrifugal state, can interchange places. Both cycles of the monad balance each other with their oppositeness. Meanwhile, in the entire space, this occurs simultaneously at different mutually coordinated stages an infinite number of times, maintaining the balance of these processes. Based on their properties, centripetal energies can form closed vortex processes, while free centrifugal energies can serve as the force of unrestrained motion.


The Monad of Material Space

The monad is not a construction – it is the nature of UEC, its way of self-expression and self-realization, and it can be conceptualized as a certain speculative structure. Material space is both continuous and has the potential for discreteness, containing, albeit virtual, but a specific primordial cell, which can be called a monad. Conditionally, it can be represented as a double-sided ribbon in the shape of a figure eight. On one half of the eight, on the outside, there is one type of energy, and on the inside, there is the second type of energy, opposing it. In the second half of the eight, after the transition point (the point of singularity), the second energy is now on the outside, and the first opposes it and is on the inside of the eight. The monad represents two opposing cycles of energy movement, which can be called the right and left cycle. Continuous space, which can be called ether, is woven from such conditional monads. The living structure of space does not allow forming a rigid and concrete form of structuring the space itself; it will always be a dynamic structure of self-expression of UEC.


The Structure of the Monad

So, if one imagines a figure eight made of ribbon with two sides, black and white. The first half of the eight has two surfaces, an external white and an internal black, after crossing the connection point of the two halves, in the second half – the external surface becomes black, and the internal white. Fig. 1. This is a conditional diagram of the space monad. Here, let the black surface correspond to the right-rotating energy A, and the white to the left-rotating energy B. According to the monad scheme, two independent cycles can be identified, which manifest when activated by external sources. In these cycles, the following components of energy can be identified – centripetal energies – ACS and BCS, and respectively, their centrifugal energies – ACB and BCB. According to the cycle of UEC movement in the monad scheme with a singularity point, ACS transitions into ACB, which then transitions into BCS, and that into BCB, and then, around again. In space, in undivided cycles of the monad, there is a continuous synchronous process of conversion of these energies. Meanwhile, the period of conversion, or frequency of conversion, has a certain upper limit. In space, energies of both cycles pulsate equally, mutually coordinated, and simultaneously. Here, the movements of centripetal energies relative to each other have opposite directions, just as the movements of centrifugal energies relative to each other also have opposite directions. This is due to the fact that energies A and B, by their nature, are mutually opposite and capable of compensating each other, leading to a reduction or complete compensation of space disturbance when combined at a specific point in space. Considering that monads are indistinguishable, all space is a single pulsating whole.



Fig. 1. The Unified Energy of Creation in the Structure of the Monad. A – alpha cycle. B – beta cycle. ACS and ACB – centripetal and centrifugal energies of cycle A. BCS and BCB – centrifugal and centripetal energies of cycle B. 1 – manifested segment of energy. a – right cycle of the unfolded monad. b – left cycle. 1 – conditionally manifested monochrome petal.


The Structure of Material Space

In the monad, the opposite energies of the right and left cycles continuously transition from one state to another. The centrifugal shifts to the centripetal and vice versa, the centripetal shifts to the centrifugal, passing through the point of singularity. The monad is capable of unfolding into two independent cycles of energy transformation – the alpha cycle and the beta cycle. Fig. 1. Each cycle of transformation is a process of continuous transition from one state to its opposite, that is, from centripetal to centrifugal and back through all intermediate states. This process, unlike ordinary rotation, can be called inversion. The properties of this monad contain the potential for structuring the entire material world, which can be called the pulsating genome of space. And real space is not a strict structure woven from such monads, but a certain space in which continuous processes of inversion occur, where one cannot specify the exact location of a monad. This is a kind of virtual structure that is continuously generated in boundless space. Moreover, the continuously pulsating space is absolutely synchronized with the ongoing processes of inversion. The continuity of space is achieved both by the synchronization of the inversion processes and by the harmony of their interconnection. Considering the structure of the elementary cell, such space can be represented as a certain conditional hexagonal lattice, which reflects the corresponding symmetry of the space itself. The ocean of original energies of space has a certain spectrum of vibrations, from high to low frequencies, which manifest through monochrome components in the process of their activation, that is, their extraction from the ocean of pulsating space. From the activated energies, pairs of energies can be extracted, on the basis of which stable manifested structures can exist. The first pair will be the dominating centripetal and its subordinate centrifugal energy of the same cycle, whether it be alpha or beta. The second pair will be the dominating centripetal energy of one cycle and the subordinate centrifugal energy of the second cycle. Thus, polar particles of different sizes can be obtained, depending on their frequency spectrum.


Forms of Existence of Monad Energies

The two opposite basic energies, alpha and beta, can have different statuses relative to the unmanifested state in space. 1- they can be in a manifested state in the form of material particles; 2- they can be in a conditionally manifested static state as a reaction of space to manifested energies; 3- they can be in a state of conditionally manifested dynamics, as a reaction of space to any form of movement of manifested energy; 4- they can be in a state of conditionally manifested through kinetic interaction processes. Photons are a special form of conditionally manifested energies of space, which are independent energy structures in a continuous sequential cycle of transformations. All basic particles consist of manifested energies that form their mass. Disturbances of space induced by manifested particles are realized through the activation of conditionally manifested energies, both static and dynamic. The translational movement of particles in space initiates additional compensatory dynamic activation. The concept of 'manifested' and 'unmanifested' is merely a scale of gradation of realizable states of the same energy. Conditionally manifested energies of space, in most cases, are an integral part of material particles. The interaction of material particles occurs through conditionally manifested energies. Material particles, by their movement in space, activate compensating energies of space, thus, a particle is an active participant in the activation of conditionally manifested energies, for example, a photon, or vortex processes in space. As for the particles themselves, stable structures will be particles not only based on two layers of opposite energies, centrifugal and centripetal, but also based on three and four such paired layers on the principle of a matryoshka doll. These are stable structures, in which the main principle of existence is that the outer centripetal energy of any layer of the particle does not allow the centrifugal energy, as if captured by it, to escape. Particles can attract each other, in an attempt to form at least a conditional monad, that is, a self-sufficient structure in the space of energies by the number of constituent energies in order to minimize the disturbance of space. The properties of space are realized through gravitational, magnetic, and electric phenomena. Centripetal energies are responsible for magnetic properties. Centrifugal energies are responsible for electrical properties. The reaction of space to the density gradient of its constituent energies is responsible for gravitational properties.


Symmetry of Space

Due to the dense packing of virtual monads, the symmetry of space has the potential of a hexagonal lattice.


Conditionally Manifested Monad

If in a certain volume of space the entire sum of manifested energies of the monad cycle is concentrated in corresponding proportions, both centripetal and centrifugal, then this is a favorable realization of manifested energies, which minimizes disturbances of space. Such a realization can be called a conditionally manifested monad. It can be composed of both manifested and conditionally manifested energies. The realization of a conditional monad is the manifestation of a relatively stable structure made of manifested energies. Atoms can be considered as examples of such conditionally manifested monads.


Properties and Relationships of the Basic Energies

The cyclic nature of the inversion process in closed space, the complementary properties, compatibility, and interconnection of the basic energies, generate both the discreteness and continuity of space. Based on basic energies, all fundamental material particles are formed, from which atoms are composed. The original density of space according to the basic components of UEC, represented in the cycles of inversion, is the only absolutely balanced state in our material world. An increase in the density of basic energies in a specific volume of space when they manifest, as in the case of the manifestation of fundamental particles, requires a decrease in density in the surrounding space, which leads to the stretching of the adjacent space. This creates a gravitational field around the material particle. The vortex properties of the material particle, its rotation due to centripetal energy, cause compensatory activation of similar centripetal components of space. This manifests magnetic properties. The priority of the basic centripetal energy that forms the material particle generates the phenomenon of charge, manifested in the form of activation of the compensatory centrifugal energy according to the monad cycle, expressed in the redistribution of the density of its energies around the particle. The formation of a charge of a particular sign can be called the polarization of space. In this case, alpha and beta particles generate opposite polarizations relative to each other. The mutual compensation of induced opposite charge polarization processes by material particles, as a form of reducing the degree of space disturbance, determines the mechanism of their mutual attraction. When forming a particle, the manifested centripetal energy from space can exist indefinitely only in a vortex state, and only when this vortex rotates around the centrifugal energy, thereby keeping it from centrifugal tendencies. Meanwhile, the diameter of the centripetal energy vortex can vary from particle to particle, depending on its basic frequency and the density of its components, as well as the size of the centrifugal energy core. In this case, the centripetal energy vortex never breaks, except in the state of induced melt. Centrifugal energy has different manifestations and possibilities. In kinetic processes and braking phenomena, it can become the driving force in the movement of the ruptured cycle of energy transformation. The interaction of basic energies is manifested in both static and dynamic processes. The apparent independence of centrifugal energy is conditional; it is always in conjunction and under the guardianship of centripetal energy. Even in the case of its translation in space, it moves in accordance with the cycle of transformation. The entire variety of interplay of energies on each other arises during the movement of particles and photons. The basis of these reactions is either a polarization or vortex phenomenon.


Types of Space Disturbance

There are four types of disturbances in material space, which reflect the deviation of space from its balanced, primordial state. The first type of disturbance is the isotropic stretching of space, leading to a decrease in the total density of space. The second type of disturbance is related to the activation of vortex centripetal energy of space as a reaction to the manifested centripetal vortex energy of a particle. The third type of disturbance is associated with the activation of centrifugal energy of space based on the principle of supplementing the ruptured cycle of the monad. The fourth type of disturbance is related to the movement of manifested energy in the form of particles. The first type of disturbance is gravitational distortion associated with the isotropic stretching of space. The second type of disturbance is the nature of magnetic phenomena. The third type of disturbance is the nature of the charge field. The fourth type of disturbance is related to kinetic processes, including the manifestation of braking radiation.


Extreme Disturbances of Space

Any impact of manifested energies on space itself, without destroying it, falls under linear processes of impact. Nonlinear processes occur with extreme activation of space energies, capable of leading to its local destruction, that is, the destruction of the conditions for realizing the cycles of energy transformation of the monad. With extreme activation in a specific volume, a melt of the basic energies of space is formed. After the period of extreme impact ends, relaxation processes begin, when the components of UEC rush towards each other, but with insufficient time and lack of appropriate conditions for the restoration of the spatial cycles of the monad, intermediate, much larger, and metastable structures are formed, which exhibit all the properties of particles surrounded by gravitational space. In the case of ultimate and extreme disturbances of space, when nonlinear processes begin, the concept of space temperature can be introduced. An example of such an extreme disturbance might be a pulsed impact of radiation of sufficient power in an extremely high frequency spectrum, where at the focal point, basic particles such as electrons and positrons appear 'out of nowhere'.


Density Pulsations of Space

The monad, a fundamental energetic unit of space, can exist in two states determined by the relationship between its centripetal and centrifugal components. The first state is the baseline, equilibrium state, where the centrifugal and centripetal components are balanced; this can be termed the equilibrium Zero space. The second state occurs when the centripetal energy within the monad begins to exceed the centrifugal energy, resulting in what can be conditionally referred to as an equilibrium N space, where N represents the degree to which the centripetal energy surpasses the equilibrium level of the Zero space. This excess leads to a compression of space proportional to N. Consequently, a region of space containing a non-equilibrium monad will exhibit a higher energy density relative to the baseline, proportional to the parameter N. The size of a cluster with elevated energy density is determined by the degree of dominance of the centripetal energy. However, at extremely high energy densities, a transition from one spatial state to another may occur—specifically, from a denser state to a less dense, equilibrium state.


Space and Its Properties

The nature of space is the principle of the monad, as a way of continuous transformation of UEC.

The original primordial density of UEC is the fundamental equilibrium state of space relative to any others.

Any form of manifestation of any space energy is a disturbance of it.

Space reacts to the manifested vortex centripetal energy with opposite compensatory vortex processes.

The manifestation of a stable structure with vortex centripetal energy leads to the activation of the corresponding centrifugal energy of space, based on the principle of complementation to a full cycle of the monad.

The layer of complementary conditionally manifested centrifugal energy, striving towards its manifested centripetal energy, decreases as the square of the distance due to the increasing area of the describing sphere.

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