莱曼线与提图斯-波德定律的天体优选轨道

R. Charreton
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引用次数: 0

摘要

由于氢原子[1]的一个新模型,我们已经提出了莱曼在这个原子的光谱分析中所观察到的谱线的一些解释。该模型建立在前量子物理学的基础上,它本身建立在经典力学的基础上,由称为u的微小粒子组成的普遍云的存在完成。这种云同时产生类似的电磁和引力效应。这个共同的起源在行星如何在太阳系中排列(如提图斯-波德定律)和电子如何在原子中排列(如莱曼谱)之间建立了一个狭窄的联系。我们将在下面的文章中描述这种联系是什么,更一般地说,什么是孤立天体的首选轨道。
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The Lines of Lyman and the Titus-Bode Law Preferred Orbital of a Celestial Body
We have proposed, thanks to a new model of the hydrogen atom [1], some explanation of the lines observed by Lyman in the spectrographic analysis of this atom. The model is based on a prequantum physics, itself founded on classical mechanics completed by the existence of a universal cloud of tiny particles called U. This cloud induces simultaneously and similarly electromagnetic and gravitational effects. This common origin creates a narrow link between how planets are arranged in a solar system, say the Titus-Bode law, and how the electrons are arranged in an atom, say the lines of Lyman. We describe what this link is in the following text and, more generally, what is the preferred orbit of an isolated celestial body.
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来源期刊
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