Light-Space-Time Quantum-Computational Model of Subtle-DNA & Genetics

Pravir Malik
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Abstract

Subtle-DNA can be thought of as a conceptual-construct consisting of a double-helix structure, arranged as a light-based downwardstrand and a time-based upward-strand. Light imagined existing at different constant speeds far greater than the known speed of c – 186,000 miles per second offers a unique view of quanta and quantum computation, and the precipitation of such light from higher to lower speeds offer insight into the conceptual downward-strand of subtle-DNA. Such a downward-strand structures an involutionary-reality that seeds space, and subsequently becomes the basis of an evolutionaryreality structured as a time-based upward-strand of subtle-DNA. Analyses of such a composite lightspace-time structure further provides a unique point of view into the origin and possibilities of genetics. Genetics can be seen as having a diverse light-based functional, as opposed to a solely form-based foundation. Genetics can also be perceived as being the output of a persistent quantum-level computation. Such a modeling provides useful hypotheses into the subtle conceptual structure of DNA, into the architecture of mutation and the likely processes of constructive and destructive mutation, and the mechanism of heredity. Further the relationship and possible impacts of the quantum-based processes of entanglement and superposition on genetics, and future possibilities due to practically infinite amount of information in antecedent layers of light can be constructed. Keywords— Genetics, Mutation, Quantum Computation, Heredity, Symmetries in Light, Superposition, Entanglement, Genetic-Type Information, Quanta, UpwardStrand, Downward-Strand, Double-Helix
精细dna与遗传学的光-时空-量子计算模型
微妙的dna可以被认为是一个由双螺旋结构组成的概念结构,排列成基于光的向下链和基于时间的向上链。想象中的光以不同的恒定速度存在,远高于已知的c - 186,000英里/秒的速度,这为量子和量子计算提供了独特的视角,而这种光从高速度到低速度的沉淀,为我们提供了对微妙的dna概念向下链的洞察。这样一个向下的链构建了一个进化的实相,它为空间播下种子,并随后成为一个进化实相的基础,这个进化实相被构建为一个基于时间的微妙dna向上链。对这种复合光-时空结构的分析进一步为遗传学的起源和可能性提供了一个独特的视角。遗传学可以被视为具有多种基于光的功能,而不仅仅是基于形式的基础。遗传学也可以被看作是持续量子级计算的输出。这样的模型为DNA的微妙概念结构,突变的结构和建设性和破坏性突变的可能过程,以及遗传机制提供了有用的假设。此外,基于量子的纠缠和叠加过程对遗传学的关系和可能的影响,以及由于在前一层光中几乎无限数量的信息而产生的未来可能性可以被构建。关键词:遗传学,突变,量子计算,遗传,光对称性,叠加,纠缠,遗传型信息,量子,向上链,向下链,双螺旋
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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