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Evolution of Life in Three Dimensional Modeling

机译:三维建模中的生命进化

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The geometry of coordinates for physiological optima of Archaea demonstrates the function of a hyperbola in two dimensions, and of a hyperboloid in three dimensions modeling. It was shown that the hyperboloid has an inclination of 67.5 °. In previous work, both hyperboloids (one- and two-sheet) were positioned vertically, as schematic data for a preliminary result's demonstration. Furthermore, our previous model of the Evolution of Life was constructed exclusively on the data of Archaea. In this work, we have constructed a hyperboloid with respect to the precise coordinates of physiological groups, and we have added the data for other key groups of microorganisms and multicellular eukaryotes that interfered and co-evolved with the relic ancient Archaean's groups. Consequently, the inclined hyperboloid was composed to demonstrate the evolution of prokaryotic and eukaryotic organisms in space and time. Here, a complete model of the Evolution of Life is presented for consideration. In this article, we discuss some critical changes of geometry for separate physiological groups during the process of evolution, and focus on a possible involvement of mathematical laws and potential application of geometric function for explanation of the evolution.
机译:古细菌的生理最佳坐标的几何形状在二维中证明了双曲线的功能,在三维模型中证明了双曲面的功能。结果表明,双曲面的倾斜度为67.5°。在以前的工作中,两个双曲面(一页和两页)都垂直放置,作为用于初步结果演示的示意图数据。此外,我们先前的生命进化模型仅基于古细菌的数据构建。在这项工作中,我们根据生理组的精确坐标构建了一个双曲面,并添加了其他关键微生物和多细胞真核生物的关键组的数据,这些微生物和多细胞真核生物与遗物古代古生动物的群体发生干扰并共同进化。因此,倾斜的双曲面构成了原核生物和真核生物在空间和时间上的演化。这里,提出了生命进化的完整模型供考虑。在本文中,我们讨论了进化过程中各个生理群体的几何形状的一些关键变化,并将重点放在数学定律的可能参与和几何函数的潜在应用上以解释进化。

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