A Mathematical Link Between the Natural Energy of Stars and Fission

B. Bayles
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Abstract

The goal of basic research is to gather information and build upon the knowledge base. This type of study identifies a problem and suggests solutions that applied research can consider and employ using empirical methodologies. Basic theory is a valid and accepted research tool, it is often mathematical in nature, and it is formulated to solve a particular problem. The problem is to find the mathematical link between the natural energy of stars and the energy created through fission. An equation is shown here to have a place in the field of nuclear engineering because it provides insight into the question of what makes the binding and decaying of atomic particles mathematically possible. This equation shows that when the two particles of unequal mass move close enough to be caught up in each other’s flow fields, they are entangled in the fields and remain bound together. When two particles are of equal mass however their encounter does not produce a binding mechanism because their flow fields are the same strength and cancel each other out. The fission of uranium-236 into the elements krypton-92 and barium-141 is discussed according to the equation. Then the fusion of deuterium and tritium is analyzed as an example of flow fields at work. Finally the first three steps of the proton-proton chain reaction are compared to the equation.
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恒星自然能量与裂变之间的数学联系
基础研究的目标是收集信息并建立知识库。这种类型的研究确定一个问题,并提出解决方案,应用研究可以考虑和采用实证方法。基础理论是一种有效和公认的研究工具,它通常是数学性质的,并且是为了解决特定问题而制定的。问题是找到恒星的自然能量和裂变产生的能量之间的数学联系。这里展示的一个方程在核工程领域占有一席之地,因为它提供了对原子粒子的结合和衰变在数学上成为可能的问题的见解。这个方程表明,当两个质量不等的粒子移动到彼此的流场中,它们就会在流场中纠缠并保持在一起。然而,当两个粒子质量相等时,它们的相遇不会产生结合机制,因为它们的流场强度相同并且相互抵消。根据方程讨论了铀-236裂变成氪-92和钡-141两个元素的过程。然后以工作中的流场为例对氘和氚的聚变进行了分析。最后将质子-质子链式反应的前三个步骤与方程进行了比较。
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