物理学一般形式的简要概述

R. Iyer
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引用次数: 0

摘要

磁子的实时观测提供了具有亥姆霍兹分解场的Iyer - Markoulakis超亮点动力学特征矩阵的形式化物理数学。将力学测量到库仑-希尔伯特-希格斯电磁质场,使物理数学建模成为可能,通过证明形式泛函矩阵将微观转化为宏观。从理论形式中适当提取的可观测值是解决介观矩阵环境问题的一个例子。从数学上分析了具有实空间信号/噪声方面的绝对零真空与非空真空通过开关感和时间感的过程向实空间的翘曲。扩展变换与梯度涡旋统一能量点物理提供自然涌现。本文将Iyer Markoulakis O 'Neill Malaver量子天体物理形式主义模型的重点与Wenzhong Hodge的纯量摩擦真空理论、模拟量具物理的耗散不连续理论结合起来,给出了一个完整的天体量子物理模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A brief overview general formalisms Physics
Real time observation of magneton has provided physical mathematics formalizing Iyer Markoulakis superluminous point dynamics eigen matrix with Helmholtz decomposition fields. Gaging of mechanics to Coulomb Hilbert electromagnetic Higgs mass fields have enabled modeling of physical mathematics, transforming micro to macro with proof formal functional matrix. Observables extracted properly out of theoretical formalisms exemplify problem-solving mesoscopic matrix environment. Warping of absolute zero vacuum to real space with non-empty vacuum, via the processes of switches sense and time sense have been mathematically analyzed having signal/noise aspects of real space. Extended transformations with gradient vortex unitary energy point physics provide natural emergence. Highlights of oiginally developed model of Iyer Markoulakis O’Neill Malaver quantum astrophysics formalism has gotten put together with Wenzhong Hodge scalar frictional vacuum theory of hod-Plenum, dissipative discontinuity of modeling gage physics, giving an Integral Model Astro Quantum PHYSICS.
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