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Outline of Hadronic Mathematics, Mechanics and Chemistry as Conceived by R. M. Santilli

机译:R. M. Santilli构思的强子数学,力学和化学纲要

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In this paper, we outline the various branches of hadronic mathematics and their applications to corresponding branches of hadronic mechanics and chemistry as conceived by the Italian-American scientist Ruggero Maria Santilli. According to said conception, hadronic mathematics comprises the following branches for the treatment of matter in conditions of increasing complexity: 1) 20th century mathematics based on Lie's theory; 2) IsoMathematics based on Santilli's isotopies of Lie's theory; 3) GenoMathematics based on Santilli's formulation of Albert's Lie-admissibility; 4) HyperMathematics based on a multi-valued realization of genomathematics with classical operations; and 5) HyperMathematics based on Vougiouklis H_v hyperstructures expressed in terms of hyperoperations. Additionally, hadronic mathematics comprises the anti-Hermitean images (called isoduals) of the five preceding mathematics for the description of antimatter also in conditions of increasing complexity. The outline presented in this paper includes the identification of represented physical or chemical systems, the main mathematical structure, and the main dynamical equations per each branch. We also show the axiomatic consistency of various branches of hadronic mathematics as sequential coverings of 20th century mathematics; and indicate a number of open mathematical problems. Novel physical and chemical applications permitted by hadronic mathematics are presented in subsequent collections.
机译:在本文中,我们概述了强子数学的各个分支,以及它们在意大利裔美国科学家Ruggero Maria Santilli构想的强子力学和化学的相应分支中的应用。根据上述构想,强子数学包括以下分支,用于在日益复杂的条件下处理物质:1)基于李理论的20世纪数学; 2)基于Santilli李理论的同位素的等数学; 3)基于桑蒂利(Santilli)关于阿尔伯特(Albert)的谎言可容许性的可容许性的基因数学; 4)基于数学运算法则的基因数学的多值实现的超数学; 5)基于超手术表达的Vougiouklis H_v超结构的超数学。此外,强子数学还包括前面五个数学中的反赫米特图像(称为等距图),用于描述反物质,同时也增加了复杂性。本文介绍的大纲包括每个分支的代表物理或化学系统的标识,主要数学结构以及主要动力学方程。我们还展示了强子数学各个分支的公理一致性,作为20世纪数学的连续覆盖。并指出许多未解决的数学问题。强子数学所允许的新的物理和化学应用将在随后的系列中介绍。

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