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Nuclear Transmutation in Nickel Films Obtained by Electrolysis

机译:电解镍膜中的核变

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Background: Low-temperature nuclear transmutation of elements takes place in technical and biological systems. High efficiency is shown in heat generators Rossi. The phenomenon of nuclear transmutation during the metabolism of microorganisms and during photosynthesis in plants was experimentally established. In biological systems, the phenomenon of nuclear transmutation exists to reproduce the elements necessary for growth and development. A variety of models have been proposed to explain cold nuclear transmutation of elements. However, the reliable nature of the phenomena has not yet been established. Methodology: The results of a study on a model experimental system in a liquid medium with the participation of hydrogen subatoms are proposed. Such states for hydrogen are predicted theoretically. Results: During electrolysis in an aqueous solution of sulfuric acid with nickel electrodes, a nickel film with a modified isotopic composition was deposited on a cathode, and ultraviolet radiation was observed, which is characteristic, in particular, in the formation of hydrogen subatoms. Conclusion: The nuclear transmutation of nickel is explained by the participation of hydrogen subatoms in the cathode region in nuclear reactions.
机译:背景:元素的低温核转化发生在技术和生物系统中。在发热器Rossi中显示出高效率。实验建立了微生物代谢和植物光合作用过程中核ation变的现象。在生物系统中,存在核trans变现象,以复制生长和发育所需的元素。已经提出了多种模型来解释元素的冷核trans变。但是,现象的可靠性质尚未确定。方法:提出了在液态介质中由氢亚原子参与的模型实验系统的研究结果。从理论上预测氢的这种状态。结果:在带有镍电极的硫酸水溶液中电解过程中,在阴极上沉积了具有修饰的同位素组成的镍膜,并观察到紫外线辐射,这尤其是形成氢亚原子的特征。结论:镍的核trans变可以通过氢亚原子在核反应中参与阴极区域来解释。

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