从无限小到无限大

Aziz Ferradji
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引用次数: 0

摘要

在他的物理学生涯中,阿尔伯特·爱因斯坦试图阐述一种理论,使量子力学与天体力学统一起来,因此他发表了广义相对论,以建立狭义相对论与牛顿万有引力定律之间的联系,他认为万有引力不是一种力,而是时空的质能含量产生的弯曲空间和时间的表现。但是这个理论有一些缺陷,特别是当我们试图解释月球绕地球旋转的时候,因为我们不能表示一个由地球创造的弯曲空间,它允许月球的引力,另一方面,爱因斯坦没有准确地解释弯曲空间是如何与地球绕其轴旋转的机制联系起来的,地球绕其轴旋转的方向与地球绕太阳公转的方向相同,这使得用广义相对论来解释引力现象变得困难,然而很明显,引力是宇宙创造的结果,这意味着定义引力起源的最好方法,是研究从无限小到无限大的过渡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Infinitely Small to Infinitely Great
During his career in physics, Albert Einstein tried hard to elaborate a theory that allows to unify the quantum mechanics with the celestial mechanics, therefore he published the general relativity in order to establish a link between the special relativity and the Newton’s gravitational law with the insight that gravity is not a force but rather a manifestation of curved space and time, which is produced by the mass-energy content of the space-time. But this theory has several flaws, especially when we try to explain the rotation of the moon around the earth, because we cannot represent a curved space created by the earth that allows the moon to gravitate, on the other hand Einstein did not accurately explain how the curved space is implicated in the mechanism of the earth’s rotation around its axis that has the same direction as the earth’s revolution around the sun, which makes it hard to explain the phenomenon of gravity with the general relativity, however it is obvious that gravity is the consequence of the creation of the universe, which means that the best way to define the origin of gravity, is the study of the transition from infinitely small to infinitely great.
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