Curvature of space-time around a mass moving at relativistic velocity

Astronomy and Astrophysics – Astronomy

Scientific paper

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Gravitational Fields, Quasars, Relativistic Velocity, Space-Time Functions, Black Holes (Astronomy), Curvature, Equations Of Motion, Mass Distribution

Scientific paper

It is theoretically demonstrated that the gravitational field around a spherically symmetric body that is of uniform density is nonstationary when the velocity of the body is relativistic. The strength of this field increases in the direction of the motion of the body and decreases behind the moving body, which leads to curvature of the space-time. A consequence of this curvature is a formula confirming the equivalence of inertial and gravitational masses. A new concept for explaining physical phenomena inside and around quasars is also proposed.

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