Oscillation symmetry applied to several astrophysical data. attempt to predict some properties of the putative ninth and tenth new solar planets

B. Tatischeff
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引用次数: 6

Abstract

The existence of opposite forces acting on astrophysical bodies, involve that their properties should obey to oscillation symmetry. The oscillation symmetry is applied to several astrophysical properties, like Nebulae radii and magnitudes, Local Group Galaxy masses, luminosities, and diameters, Comet radii, orbital periods, and eccentricities, Black hole masses, orbital periods, and distance from earth, Star masses, magnitudes, and distances from Sun. This symmetry is used to predict some still unknown astronomical properties, namely the properties of two additional possible solar planets. Using the predicted possible masses of these planets the method allows to predict their possible densities, rotation durations, revolution periods, orbital speeds, and eccentricities.
振荡对称性应用于若干天体物理数据。试图预测假定的第九和第十颗新太阳系行星的一些特性
作用在天体上的相反力的存在,意味着它们的性质应该服从振荡对称性。振荡对称性适用于一些天体物理特性,如星云半径和星等、本星系群质量、光度和直径、彗星半径、轨道周期和偏心率、黑洞质量、轨道周期和与地球的距离、恒星质量、星等和与太阳的距离。这种对称性被用来预测一些仍然未知的天文性质,即另外两颗可能的太阳行星的性质。通过预测这些行星的可能质量,该方法可以预测它们可能的密度、自转持续时间、公转周期、轨道速度和离心率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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