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Yanlei Liu

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#large language models Open access Sep 2026

A Conjecture of MatterJianzi Theory——A Unified Derivation of the Equations of Modern Physics

Starting from the fundamental equations of Jianzi Theory, this paper systematically derives the core equation systems of modern physics. The derivation introduces no external assumptions; it proceeds solely by applying limit conditions to the fundamental quantities of Jianzi Theory—vibrational level \mathcal{V}, position \mathbf{r}, and velocity \dot{\mathbf{r}}—and to its basic equations. The resulting equations include Newtonian mechanics, Maxwell's equations, the laws of thermodynamics, the Schrödinger equation, the Dirac equation, special relativity, the Einstein field equations, the Friedmann equations, and the structure of gauge field theory. All derivations are carried out within the coordinate background of absolute vacuum. (Note on AI-Assisted Computation Certain mathematical derivations and physical calculations in this paper were performed by an AI tool (large language model) based on the theoretical framework and postulate system provided by the author. Specifically, the AI tool contributed to: formula derivation, equation solving, integral evaluation, series summation, and recalculation verification of established quantum mechanical results. All physical insights, core assumptions, logical premises, and the theoretical framework itself were independently developed by the author. The AI tool served solely as an auxiliary instrument for mathematical derivation and computational verification, comparable in role to symbolic computation software or numerical tools routinely employed by researchers. The author has reviewed every derived result for physical plausibility, consistency with known experimental data, and logical coherence, and assumes full responsibility for all conclusions. This statement is provided in the interest of academic transparency, while clearly distinguishing between the originality of ideas and the auxiliary role of computation.)

Yanlei Liu · 0 citations
#large language models Open access Sep 2026

A Conjecture of MatterJianzi Theory——A Unified Derivation of the Equations of Modern Physics

Starting from the fundamental equations of Jianzi Theory, this paper systematically derives the core equation systems of modern physics. The derivation introduces no external assumptions; it proceeds solely by applying limit conditions to the fundamental quantities of Jianzi Theory—vibrational level \mathcal{V}, position \mathbf{r}, and velocity \dot{\mathbf{r}}—and to its basic equations. The resulting equations include Newtonian mechanics, Maxwell's equations, the laws of thermodynamics, the Schrödinger equation, the Dirac equation, special relativity, the Einstein field equations, the Friedmann equations, and the structure of gauge field theory. All derivations are carried out within the coordinate background of absolute vacuum. (Note on AI-Assisted Computation Certain mathematical derivations and physical calculations in this paper were performed by an AI tool (large language model) based on the theoretical framework and postulate system provided by the author. Specifically, the AI tool contributed to: formula derivation, equation solving, integral evaluation, series summation, and recalculation verification of established quantum mechanical results. All physical insights, core assumptions, logical premises, and the theoretical framework itself were independently developed by the author. The AI tool served solely as an auxiliary instrument for mathematical derivation and computational verification, comparable in role to symbolic computation software or numerical tools routinely employed by researchers. The author has reviewed every derived result for physical plausibility, consistency with known experimental data, and logical coherence, and assumes full responsibility for all conclusions. This statement is provided in the interest of academic transparency, while clearly distinguishing between the originality of ideas and the auxiliary role of computation.)

Yanlei Liu · 0 citations