THE GENERAL EQUATION OF MOTION VIA THE SPECIAL THEORY OF RELATIVITY AND QUANTUM MECHANICS PART I: A NEW APPROACH TO NEWTON EQUATION OF MOTION
Makaleler, UMATHE GENERAL EQUATION OF MOTION VIA THE SPECIAL
THEORY OF RELATIVITY AND QUANTUM MECHANICS
PART I: A NEW APPROACH TO NEWTON EQUATION OF MOTION
Tolga Yarman
Işık University
Address: Maslak, Istanbul, Turkey
August 2002
ABSTRACT
Herein we present a whole new approach to the derivation of the Newton Equation of Motion; throughout Part II of the present work, this shall lead to the findings brought up within the frame of the general theory of relativity (such as the precession of the perihelion of the planets, and the deflection of light nearby a star). To the contrary of what had been generally achieved so far, our basis consists in supposing that the gravitational field, through the binding process, alters the “rest mass” of an object conveyed in it. In fact, the special theory of relativity already imposes such a change. Next to this fundamental theory, we use the classical Newtonian gravitational attraction, reigning between two static masses. We have previously shown however that the 1/r2 dependency of the gravitational force is also imposed by the special theory of relativity.
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