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The electro-gravitational theory


Partes: 1, 2

    1. Introduction
    2. The galileo aceleration
    3. The aceleration at the moon surface
    4. The behavior of moon
    5. The newton focus
    6. The universal constant of gravitation
    7. Electric properties
    8. The gravitational well
    9. The four seasons
    10. Conclusions
    11. References

    Universidad Autónoma de Baja California

    R E S U M E N

    Se examina la posibilidad que la verdadera naturaleza sobre interacciones gravitacionales sea de origen eléctrico. Se establece una relación: carga/masa válida para nuestro sistema solar. Asignando un valor numérico único-pero no arbitrario – para una carga eléctrica solar, y bajo la hipótesis que los planetas neutros reciben una carga inducida por nuestra estrella-carga que ubicaremos en el centro de masa de cada uno de ellos -, se obtienen resultados idénticos a los correspondientes en la teoría de Newton; pero además se ofrece la posibilidad de llegar a conocer distintas propiedades electromagnéticas importantes para cada uno de nuestros planetas. Se presenta así mismo el valor numérico más cercano para la constante universal gravitacional.

    A B S T R A C T

    We examine the possibility that the true nature over gravitational interactions was of electric origin. We present a ratio: charge/mass for our planetary solar system. We assigned a numerical value-but not arbitrary- for a solar electric charge; and then examine the hypothesis that the neutral planets received an induced electric charge-that is located at the centers of masses of each one- and we obtain identical answers than that of Newton theory of gravitation; but, furthermore, we present the possibility of knowing electric properties for our planets. Finally, we present a numerical value for the constant of universal gravitation that is the true value for that constant.

    Key Words: THE NEWTON-COULOMB RELATIONSHIP; EQUAL SOLUTIONS; THE GRAVITATIONAL WELL

    INTRODUCTION

    In the XVII century, Isaac Newton proposed that the force (F) between masses M and m, separated by a (R) distance about theirs mass centers will be always of atractive character and given by:

    (1)

    edu.red

    edu.red

    where;

     

    A century later; Charles A. Coulomb proposed that the force (F) between the electric charges Q and q, separated by a distance (R) about theirs mass centers will by of attractive or repulsive character, and given by:

    (2)

    edu.red

    where; edu.red

    THE PROPOSE

    If we propose for the sun have an electric constante charge -but nor arbitrary- of:

    edu.red

    And consider that our star makes an electric induced charge on the opposite sign over our neutral planets, just located in the center of mass of every one, considering the forces (1) and (2), and that

    Ms= 1.989 x 10 30 Kg; for the sun mass, we obtain that

    (3)

    edu.red

    There is that exist an general relation: charge/mass that is a constant for all of ours planets in the solar system.

    In the case of our planet, with mass ME=5.976 x 1024 Kg we obtain and induced electric charge of:

    edu.red

    Just in the center of mass of our planet.

    In the successive considerations we denoted the electric induced charge by the "own charge" of the body.

    THE GALILEO ACELERATION

    If we considerate the acceleration on the surface of the Earth planet taking in account the electric idea, and we considered an apple of the apple tree of Newton; where:

    mo; is the mass of the apple.

    qo; is the own charge the apple.

    edu.redis the own charge in the earth.

    RE= 6.37814 x 106m; is the radius of the Earth.

    Starting by the second law of Newton: edu.red

    By Coulomb: edu.red

    But: edu.red

    Partes: 1, 2
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