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地球空间稳定核素的趋势分析方程与物质的超光速运动规律
引用本文:阎坤.地球空间稳定核素的趋势分析方程与物质的超光速运动规律[J].地球物理学进展,2006,21(1):38-47.
作者姓名:阎坤
作者单位:西安现代非线性科学应用研究所, 西安 710061
摘    要:通过讨论地球空间已有稳定核素内质子数与中子数的分布趋势,介绍了稳定核素的趋势分析方法及其有关周期性分布方程形式,给出了理论方程曲线与地球空间稳定核素实验数据分布点的对比结果,进而给出了稳定核素极限值和元素周期表中化学元素极限,以及其与正负粒子对的可能对应关系方程,包括位于电子中微子层面附近的粒子质量量级初步估计.随后通过建立真空物质能量状态的二个假设,及基于等效Binet方程,给出了与Einstein狭义相对论有关结论相融合的物质粒子以光速及超光速运动的质量及能量方程;作为推论,对这些方程与暗物质及暗能量的可能对应关系予以了初步探讨.

关 键 词:稳定核素  趋势分析方程  周期性规律  化学元素极限  真空物质能量状态  超光速运动方程
文章编号:1004-2903(2006)01-0038-10
收稿时间:2005-06-10
修稿时间:2005-08-10

The tendency analytical equations of stable nuclides and the superluminal velocity motion laws of matter in geospace
YAN Kun.The tendency analytical equations of stable nuclides and the superluminal velocity motion laws of matter in geospace[J].Progress in Geophysics,2006,21(1):38-47.
Authors:YAN Kun
Abstract:In this paper,by discussing the existent distribution trend of relation for the proton number and the neutron number to be included by the stable nuclides in geospace,the tendency analytical method and it's periodic distribution equation forms of the stable nuclides are expressed at first.Then the comparison result between the curve of the theoretical equation analysis and the points of the experimental distribution data of the stable nuclides in geospace are given.Further more,the stable nuclide limit and the chemical element limit for the chemical element periodic table are given,and the possible corresponding relation equation with the positron-particle annihilation is expressed,which includes the estimation of the order of the static mass to be situated nearby at the electron neutrino structural dimension.Subsequently,by forming two hypotheses about the energy state of vacuum matter,and basing on the equivalent Binet equation,the mass equations and the energy equations of the partial moving with light-velocity or superluminal-velocity motion fusing with the results of Einstein special relativity are expressed.As inference,the possible corresponding relations between the mass equations and energy equations with the dark matter and dark energy are discussed tentatively.
Keywords:stable nuclide  tendency analytical equation  periodic law  chemical element limit  energy state of vacuum matter  equations of superluminal velocity motion
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