Javascript must be enabled to continue!
Gravitational cells and gravitational strings.
View through CrossRef
Abstract
In this work, such concepts as gravitational cells and gravitational strings were successfully built into the theory of the gravitational field. This innovation made it possible to move from general ideas about gravitational interaction to a deeper and more detailed understanding of this physical process and to obtain significant scientific results. These results include: obtaining the formula for the gravitational constant, the mass of an electron and the mass of a hydrogen atom through fundamental physical constants; determining the energy of a graviton, obtaining the length and frequency of gravitational waves; obtaining the distance of action of gravitational forces; obtaining a relativistic formula for the speed of a body in a gravitational field, and etc. In this work, Planck's constant was successfully applied to the theory of gravitational cells and strings. As a result, the formula for the minimum distance of gravitational interaction, the formula for the mass of an electron, and the formula for the mass of a hydrogen atom were obtained. Through the synthesis of the theory of gravitational cells and the relativistic formula of Einstein's total energy, the relativistic formula for the velocity of a body in a gravitational field was obtained. The results obtained by the new formulas completely coincided with the known scientific and experimental data. A distinctive feature of this study is the fact that only fundamental physical constants are present in the new formulas.
Title: Gravitational cells and gravitational strings.
Description:
Abstract
In this work, such concepts as gravitational cells and gravitational strings were successfully built into the theory of the gravitational field.
This innovation made it possible to move from general ideas about gravitational interaction to a deeper and more detailed understanding of this physical process and to obtain significant scientific results.
These results include: obtaining the formula for the gravitational constant, the mass of an electron and the mass of a hydrogen atom through fundamental physical constants; determining the energy of a graviton, obtaining the length and frequency of gravitational waves; obtaining the distance of action of gravitational forces; obtaining a relativistic formula for the speed of a body in a gravitational field, and etc.
In this work, Planck's constant was successfully applied to the theory of gravitational cells and strings.
As a result, the formula for the minimum distance of gravitational interaction, the formula for the mass of an electron, and the formula for the mass of a hydrogen atom were obtained.
Through the synthesis of the theory of gravitational cells and the relativistic formula of Einstein's total energy, the relativistic formula for the velocity of a body in a gravitational field was obtained.
The results obtained by the new formulas completely coincided with the known scientific and experimental data.
A distinctive feature of this study is the fact that only fundamental physical constants are present in the new formulas.
Related Results
QUANTIZATION OF THE GRAVITATIONAL FIELD. THEORETICAL AND EXPERIMENTAL SUBSTANTIATION OF THE GRAVITATIONAL-ELECTROMAGNETIC RESONANCE. THE PHYSICAL NATURE OF THE QUANTUM OF THE GRAVITATIONAL FIELD.WHY THE SPEED OF LIGHT IN VACUUM IS CONSTANT
QUANTIZATION OF THE GRAVITATIONAL FIELD. THEORETICAL AND EXPERIMENTAL SUBSTANTIATION OF THE GRAVITATIONAL-ELECTROMAGNETIC RESONANCE. THE PHYSICAL NATURE OF THE QUANTUM OF THE GRAVITATIONAL FIELD.WHY THE SPEED OF LIGHT IN VACUUM IS CONSTANT
It is shown that gravitating objects that are at rest, or move without acceleration, create a standing gravitational wave in space. The length of this wave is a quantization step o...
Design of Casing Strings
Design of Casing Strings
Abstract
Considerable economy can be effected by designing each casing string individually for the particular set of conditions involved. The paper discusses meth...
Imaging of Von Willebrand Factor Remodeling Upon Secretion From Vascular Endothelial Cells
Imaging of Von Willebrand Factor Remodeling Upon Secretion From Vascular Endothelial Cells
Abstract
Abstract 263
In response to vascular injury, endothelial cells rapidly secrete high molecular weight multimers of the coagulation protein Von...
Successful transfection of Lymphoblastoid cell line (Preprint)
Successful transfection of Lymphoblastoid cell line (Preprint)
BACKGROUND
Immortalization is the stage that the cell goes through before full transformation [1]. Human resting B lymphocytes from peripheral blood are eas...
Parameterized Strings: Algorithms and Applications
Parameterized Strings: Algorithms and Applications
The parameterized string (p-string), a generalization of the traditional string, is composed of constant and parameter symbols. A parameterized match (p-match) exists between two p...
Actual Problems of Modern Physics, Astrophysics, and Cosmology
Actual Problems of Modern Physics, Astrophysics, and Cosmology
Variants of solving actual problems of modern physics, astrophysics, and cosmology are considered. Since the observable Universe is a rotating black hole, the Kerr metric is the mo...
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
MARS-seq2.0: an experimental and analytical pipeline for indexed sorting combined with single-cell RNA sequencing v1
Human tissues comprise trillions of cells that populate a complex space of molecular phenotypes and functions and that vary in abundance by 4–9 orders of magnitude. Relying solely ...
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...

