信息磁子:水相干性和信息在生物动力学和形态学中的作用

R. Norman, J. Dunning-Davies
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引用次数: 2

摘要

生物系统依赖于水系统并与水系统交织在一起。我们将提出经验推导出的水的独特性质的证据,并证明通过水动力学和记忆特性介导的分子电磁信息编码的有效作用。然后将从量子、热力学和强子方面阐述工作理论。然后将定义动态磁分子的水分子种类。由此得出的结论是,未来的医学和药理学中可能存在一种无毒的、纯粹的信息潜力。磁分子和水信息磁分子动力学可能有一天会重新定义能量储存和生产,以及医疗实践。
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The Informational Magnecule: The Role of Aqueous Coherence and Information in Biological Dynamics and Morphology
Biological systems are dependent upon and intertwined with aqueous systems. We will present empirically derived evidence of the unique properties of water and demonstrate the efficacious role of molecular electromagnetic informational encoding as mediated through aqueous dynamics and mnemic properties. Working theory will then be articulated from quantum, thermodynamic and Hadronic aspects. An aqueous molecular species of dynamic magnecule will then be defined. Implications are drawn which point to a possible nontoxic, purely informational potential for future medical and pharmacological science. Magnecules and aqueous informational magnecular dynamics may one day redefine energy storage and production, as well as medical practice.
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