Accelerated Motion Towards Relativistic Velocities Described by Newtonian Mechanics
Eltjo Haselhoff
Abstract
Open-access reader
Eltjo Haselhoff
Abstract
Open-access reader
This paper presents a simple geometric derivation of the equations of motion for an object that accelerates from zero speed towards a relativistic velocity. This is not done by using Special Relativity, but with Newtonian Mechanics only. The results are identical to those derived by Special Relativity, with the exception of the expression for time dilation, in case the clock postulate is not applied. The clock postulate is used by Special Relativity, and assumes that the time dilation of an accelerating object at any moment in time depends on its contemporary velocity only. It is shown that the clock postulate is violated in case of continuous longitudinal acceleration, and an alternative expression for accelerated time dilation is presented without the need for the clock postulate.
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This paper presents a simple geometric derivation of the equations of motion for an object that accelerates from zero speed towards a relativistic velocity. This is not done by using Special Relativity, but with Newtonian Mechanics only. The results are identical to those derived by Special Relativity, with the exception of the expression for time dilation, in case the clock postulate is not applied. The clock postulate is used by Special Relativity, and assumes that the time dilation of an accelerating object at any moment in time depends on its contemporary velocity only. It is shown that the clock postulate is violated in case of continuous longitudinal acceleration, and an alternative expression for accelerated time dilation is presented without the need for the clock postulate.
Key concepts: Time dilation, Classical mechanics, Theory of relativity, Twin paradox, Special relativity, Physics, Relativistic speed, Relativistic mechanics