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首页> 外文期刊>International Journal of Applied Research on Information Technology and Computing >An Introductory Informatics Theoretical Framework,based on an Integrable Lattice Model using Quantized Function Algebras, for Studying DNA-Ionized Gas Interaction System
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An Introductory Informatics Theoretical Framework,based on an Integrable Lattice Model using Quantized Function Algebras, for Studying DNA-Ionized Gas Interaction System

机译:基于可量化格函数代数的可积格模型的信息学理论框架,用于研究DNA电离气体相互作用系统

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摘要

Usually we observe that Bio-physical systems or Bio-chemical systems are many a time based on nanoscale phenomenon in different host environments, which involve many particles can often not be solved explicitly. Instead a physicist, biologist or a chemist has to rely either on approximate or numerical methods. For a certain type of systems, called integrable in nature, there exist particular mathematical structures and symmetries which facilitate the exact and explicit description. Most integrable systems, we come across are low-dimensional, for instance, a one-dimensional chain of coupled atoms in DNA molecular system with a particular direction or exist as a vector in the environment. This theoretical research paper aims at bringing one of the pioneering 'Reaction-Diffusion' aspects of the DNA-plasma material system based on an integrable lattice model approach utilizing quantized functional algebras, to disseminate the new developments, initiate novel computational and design paradigms.
机译:通常我们会观察到生物物理系统或生物化学系统是基于不同宿主环境中纳米尺度现象的许多次,其中涉及许多粒子,通常无法明确解决。相反,物理学家,生物学家或化学家必须依靠近似或数值方法。对于某种本质上称为可积分的系统,存在特定的数学结构和对称性,它们有助于进行精确而明确的描述。我们遇到的大多数可积系统都是低维的,例如,DNA分子系统中具有特定方向的耦合原子的一维链或在环境中作为载体存在。这篇理论研究论文旨在利用可量化的格子代数,利用可积晶格模型方法,引入DNA等离子体材料系统的开创性“反应扩散”方面,以传播新的发展,启动新颖的计算和设计范式。

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