Aether dynamics: Classical mechanics explained

IF 0.6 Q4 PHYSICS, MULTIDISCIPLINARY Physics Essays Pub Date : 2023-06-23 DOI:10.4006/0836-1398-36.2.129
Peter M. Atkinson, Samuel Nlend
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Abstract

In this paper, we propose that the density of the aether is a universal constant and is the same in all inertial frames of reference. We suggest that other physical phenomena, such as the speed of light, Maxwell's equations, and gravity, which are the same in all inertial frames of reference, behave in this manner, because they all depend on the density of the aether. We discuss the origin of mass in terms of aether displacement by subatomic particles with mass. Explanations of Newton's laws of motion, based on the aether, are given. The fundamental causes of kinetic energy and momentum are explained in relation to the aether. We offer an explanation for the constant speed of light. Einstein's special theory of relativity is explained in relation to the constancy of the aether density, and the famous equations in his theory are derived using basic aether dynamics. We suggest that aether particles are fundamental particles behaving like tiny springs as proposed by Hooke's law and be given the name aetheons. We propose the spring constant of the aetheon ultimately limits the speed of light to c . This paper offers a way to link classical Newtonian physics to quantum physics.
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以太动力学:经典力学解释
在本文中,我们提出以太的密度是一个普适性常数,并且在所有惯性参照系中是相同的。我们认为,其他物理现象,如光速、麦克斯韦方程和引力,在所有惯性参照系中都是一样的,也会以这种方式表现,因为它们都依赖于以太的密度。我们从具有质量的亚原子粒子的以太位移的角度讨论质量的起源。以以太为基础,给出了牛顿运动定律的解释。动能和动量的基本原因与以太的关系得到了解释。我们对光速恒定提供了一个解释。爱因斯坦的狭义相对论是用以太密度的常数来解释的,他的理论中著名的方程是用基本的以太动力学推导出来的。我们认为以太粒子是胡克定律中表现为微小弹簧的基本粒子,并被命名为以太子。我们提出,神神殿的弹簧常数最终将光速限制在c。本文提供了一种将经典牛顿物理学与量子物理学联系起来的方法。
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来源期刊
Physics Essays
Physics Essays PHYSICS, MULTIDISCIPLINARY-
自引率
83.30%
发文量
50
审稿时长
6-12 weeks
期刊介绍: Physics Essays has been established as an international journal dedicated to theoretical and experimental aspects of fundamental problems in Physics and, generally, to the advancement of basic knowledge of Physics. The Journal’s mandate is to publish rigorous and methodological examinations of past, current, and advanced concepts, methods and results in physics research. Physics Essays dedicates itself to the publication of stimulating exploratory, and original papers in a variety of physics disciplines, such as spectroscopy, quantum mechanics, particle physics, electromagnetic theory, astrophysics, space physics, mathematical methods in physics, plasma physics, philosophical aspects of physics, chemical physics, and relativity.
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