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ON A HYPOTHESIS REGARDING THE PHYSICAL NATURE OF THE WEAK INTERACTION

机译:关于弱相互作用的物理性质的假说

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This paper attempts, in a non-quantum mechanical way, to determine a plausible scenario for the true physical nature of the weak interaction. Examination of dimensions and calculated values for seemingly unrelated numbers results in values which are surprisingly close and seemingly beyond the confines of coincidence. Equating these numbers and inserting the results into a simplistic model for the weak interaction results in a value close to the experimental Fermi weak interaction constant The question is asked if there really is a relationship between the weak interaction and the gravitational 'constant'. It is noted that energy levels, whether nuclear or orbital, are inherent to the atom as a whole and not necessarily to its separate parts. Subsequently, nuclear energy levels can affect orbital electrons, but, alternatively and more specifically, does there exist a reverse process of electron energy levels sending information to the weak interaction for the purpose of exposing a macroscopic variable gravitational constant? This paper attempts to investigate, in a non-quantum mechanical way, what the plausible nature of the weak interaction really is. This endeavor starts out by noticing the similarity in values of two particular numbers. We begin by giving the following sets of values which will be used in the calculation of those two numbers.
机译:本文试图以一种非量子力学的方式,为弱相互作用的真实物理性质确定一个合理的情况。对似乎无关的数字进行尺寸和计算值的检查得出的值令人惊讶地接近,并且似乎超出了巧合的范围。将这些数字相等,并将结果插入到弱相互作用的简化模型中,可以得到接近实验费米弱相互作用常数的值。问题是,弱相互作用与引力“常数”之间是否确实存在关系。要注意的是,无论是核能还是轨道能级,都是原子整体所固有的,而不一定是其单独部分所固有的。随后,核能级会影响轨道电子,但是,替代地,更具体地说,是否存在电子能级的反向过程,从而将信息发送给弱相互作用,以暴露宏观可变引力常数?本文试图以一种非量子力学的方式研究这种弱相互作用的真实本质是什么。这项工作从注意到两个特定数字的值相似开始。我们首先给出以下将在这两个数字的计算中使用的值集。

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