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The Harmonic Neutron Hypothesis: Prime Number Factor Patterns and Their Relationship to the Hierarchy of the Fundamental Particles and Bosons

机译:谐波中子假说:素数因子模式及其与基本粒子和玻色子层次的关系

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The Harmonic Neutron Hypothesis, HNH, has demonstrated that many of the fundamental physical constants including particles and bosons are associated with specific quantum integers, n. These integers define partial harmonic fractional exponents, 1 ± (1), of a fundamental frequency, Vf. The goal is to evaluate the prime and composite factors associated with the neutron n0, the quarks, the kinetic energy of neutron beta decay, the Rydberg constant, R, e, a0, H0, h, α, W, Z, the muon, and the neutron gluon. Their pure number characteristics correspond and explain the hierarchy of the particles and bosons. The elements and black body radiation represent consecutive integer series. The relative scale of the constants cluster in a partial harmonic fraction pattern around the neutron. The global numerical organization is related to the only possible prime factor partial fractions of 2/3, or 3/2, as pairs of 3 physical entities with a total of 6 in each group. Many other progressively resonant prime number factor patterns are identified with increasing numbers of smaller factors, higher primes, or larger partial fractions associated with higher order particles or bosons.
机译:谐波中子假说(HNH)表明,许多基本物理常数(包括粒子和玻色子)与特定的量子整数n有关。这些整数定义了基本频率Vf的部分谐波分数指数1±(1 / n)。目的是评估与中子n0,夸克,中子β衰变的动能,里德堡常数R,e,a0,H0,h,α,W,Z,μ子,和中子胶子。它们的纯数字特性对应并解释了粒子和玻色子的层次。元素和黑体辐射表示连续的整数序列。常数的相对尺度聚集在中子周围的部分谐波分数模式中。全局数值组织与2/3或3/2的唯一可能的质因子分式相关,这是3个物理实体对的组合,每组中总共有6个实体。随着越来越多的较小因子,较高质数或与较高阶粒子或玻色子相关的较大部分分数的增加,可以识别出许多其他的逐步共振质数因子模式。

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