Author
Jianming Wang
Recent research
- Materials & EnergyOpen access
This manuscript is Volume IV of the program that seeks to axiomatize chemistry within the established global-realist framework. Its purpose is to derive the macroscopic states of matter and the laws of phase transitions from the previously admitted microscopic ontology, without i...
- Materials & EnergyOpen access
This manuscript is the opening volume of a systematic program that seeks to axiomatize chemistry on the foundation of the global-realist physical ontology. Beginning from three fundamental physical axioms — the reality of the spacetime vacuum as a dynamical substrate, the microsc...
- Physics & SpaceOpen access
This manuscript is Volume III of the program to axiomatize chemistry within the established global-realist framework. Its purpose is to derive the thermodynamic, kinetic, catalytic, acid–base, redox, photochemical, and solvent-mediated structures of chemical reactions without int...
- AI & ComputingOpen access
The Kármán constant κκ in the logarithmic law of wall turbulence is a universal constant whose accepted value is approximately 0.41, yet for more than a century it has generally been treated as an empirical parameter. In the framework of global realism, we derive κκ from first pr...
- Physics & SpaceOpen access
This second volume of the global‑realist biology program derives genetics as a lawful continuation of already closed physical, chemical, and first‑biological layers. Without introducing “gene”, “allele”, “recombination”, or “genome” as primitive terms, we construct them from sequ...
- Physics & SpaceOpen access
This manuscript initiates the biology program within the global-realist framework by deriving the first biological layer from the already closed physical and chemical programs. Its task is not to introduce “life,” “cell,” “gene,” “enzyme,” or “metabolism” as primitive explanatory...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...
- Physics & SpaceOpen access
We propose a unified physical framework in which four-dimensional spacetime vacuum is the unique physical reality, and all quanta are its localized topological excitations. Matter particles correspond to stable knot-like configurations, while radiation quanta correspond to weak p...