The Problem of Correcting the Newtonian Mechanics
Journal Title: International Journal of Fundamental Physical Sciences - Year 2014, Vol 4, Issue 4
Abstract
The problem of motion of a planet or an asteroid in the gravity field of the Sun is considered with allowance for translational motion of the Solar System through the static ether. An algorithm for calculating the perihelion motion during the single orbit is found. The orbit of a planet within the framework of the classical mechanics is motionless. However, slow precession of classical planetary orbits is found in observational astronomy. The new algorithm takes into account not only the orbit geometry but also its spatial orientation. Based on the observational data for perihelion drifts of Mercury, Earth, and Mars, the value and direction of the absolute velocity of the Sun are determined. These results are in agreement with the experimental data by Miller. The strong anomaly for the motion of the asteroid Aten is predicted. Modern techniques of practical astronomy make it possible to verify this forecast.
Authors and Affiliations
Alexander V. Emelyanov
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