The movement equations in the General Theory of relativity corresponding to a particle in a weak gravitational field, le us appoint analogy with the movement equations of a charged particle in a electromagnetic field. A study of this solutions let us appoints a deep analogy between gravitation and electromagnetism. As consequence of this result you can express the weak gravitational fields by a system of equations similar to the Maxwell's for the electromagnetism field.Las ecuaciones de movimiento de la teoría general de la relatividad correspondiente a una partícula en un campo gravitatorio débil, permite establecer determinada analogía con las de una partícula cargada en un campo electromag...
This paper proves that electromagnetic fields as produced by charges, in analogy with gravitational ...
A mathematical derivation of Maxwell’s equations for gravitation, based on a mathematical proof of F...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
The movement equations in the General Theory of relativity corresponding to a particl...
Las ecuaciones de movimiento de la teoría general de la relatividad correspondiente a una partícul...
We discuss the linear gravitoelectromagnetic approach used to solve Einstein’s equations in the weak...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
We reexamine and further develop different gravito-electromagnetic (GEM) analogies found in the lite...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
In this paper, we have given a presentation of the relativistic theory of asymmetric field. It is ou...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
In this thesis gravitomagnetic effects are analysed in some detail. Einstein’s equations for weak gr...
It is well known that gravitational quantities are in many ways similar to electromagnetic quantitie...
It is well known that gravitational quantities are in many ways similar to electromagnetic quantitie...
Breve descripción de los campos y el electromagnetismoSe hace un breve recorrido por las leyes y ecu...
This paper proves that electromagnetic fields as produced by charges, in analogy with gravitational ...
A mathematical derivation of Maxwell’s equations for gravitation, based on a mathematical proof of F...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
The movement equations in the General Theory of relativity corresponding to a particl...
Las ecuaciones de movimiento de la teoría general de la relatividad correspondiente a una partícul...
We discuss the linear gravitoelectromagnetic approach used to solve Einstein’s equations in the weak...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
We reexamine and further develop different gravito-electromagnetic (GEM) analogies found in the lite...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
In this paper, we have given a presentation of the relativistic theory of asymmetric field. It is ou...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...
In this thesis gravitomagnetic effects are analysed in some detail. Einstein’s equations for weak gr...
It is well known that gravitational quantities are in many ways similar to electromagnetic quantitie...
It is well known that gravitational quantities are in many ways similar to electromagnetic quantitie...
Breve descripción de los campos y el electromagnetismoSe hace un breve recorrido por las leyes y ecu...
This paper proves that electromagnetic fields as produced by charges, in analogy with gravitational ...
A mathematical derivation of Maxwell’s equations for gravitation, based on a mathematical proof of F...
As gravitation and electromagnetism are closely analogous long-range interactions, and the current f...