The analysis of the relativistic uniform system in the framework of the covariant theory of gravitation leads to five different masses of the physical system, in which the particles are bound together by means of the electromagnetic and gravitational fields, the acceleration field and the pressure field. In this case it turns out that the system’s gravitational mass is equal to the sum of the invariant masses of all the system’s particles, and the system’s inertial mass is less than the gravitational mass by the value of the system’s binding mass-energy
Relations for the relativistic energy and metric are analyzed inside and outside the body in the fra...
This paper derives a series of the mass–energy equivalence in special relativity in a new way. The n...
Energy and mass are generally interpreted as difFerent properties of matter, for instance: the energ...
The analysis of the relativistic uniform system in the framework of the covariant theory of gravitat...
For the relativistic uniform system with an invariant mass density the exact expressions are determi...
The total energy, binding energy, energy of fields, pressure energy and the potential energy of the ...
Within the framework of the covariant theory of gravitation (CTG) the energy is calculated for a sys...
The general relativistic notion of gravitational and inertial mass is discussed from the general vie...
In the paper, it has been established that the sum of stress-energy tensors of the electromagnetic a...
The essence of mass and its relation to the relativistic energy is considered. It is assumed that th...
The equivalence principle in combination with the special relativistic equivalence between mass and ...
Relations for the relativistic energy and metric are analyzed inside and outside the body in the fra...
The energy of the gravitational field and the mass related to it are calculated. The momentum of the...
The dissertation consists of the following three parts: Part I: Mass. Different definitions of mass ...
The gravitational coupling parameter G is determined by a non riemannian curvature scalar of a backg...
Relations for the relativistic energy and metric are analyzed inside and outside the body in the fra...
This paper derives a series of the mass–energy equivalence in special relativity in a new way. The n...
Energy and mass are generally interpreted as difFerent properties of matter, for instance: the energ...
The analysis of the relativistic uniform system in the framework of the covariant theory of gravitat...
For the relativistic uniform system with an invariant mass density the exact expressions are determi...
The total energy, binding energy, energy of fields, pressure energy and the potential energy of the ...
Within the framework of the covariant theory of gravitation (CTG) the energy is calculated for a sys...
The general relativistic notion of gravitational and inertial mass is discussed from the general vie...
In the paper, it has been established that the sum of stress-energy tensors of the electromagnetic a...
The essence of mass and its relation to the relativistic energy is considered. It is assumed that th...
The equivalence principle in combination with the special relativistic equivalence between mass and ...
Relations for the relativistic energy and metric are analyzed inside and outside the body in the fra...
The energy of the gravitational field and the mass related to it are calculated. The momentum of the...
The dissertation consists of the following three parts: Part I: Mass. Different definitions of mass ...
The gravitational coupling parameter G is determined by a non riemannian curvature scalar of a backg...
Relations for the relativistic energy and metric are analyzed inside and outside the body in the fra...
This paper derives a series of the mass–energy equivalence in special relativity in a new way. The n...
Energy and mass are generally interpreted as difFerent properties of matter, for instance: the energ...