2013The International Journal of PhysicsRequires access

Unified Field Theory and the Configuration of Particles

Zhiliang Cao, Henry Gu Cao

Open publisher page 16 citations

Abstract

The Standard Model of particle physics is a concerning electromagnetic, weak, and strong nuclear interactions, which mediate the dynamics of known subatomic particles. The current formulation was finalized based on the existence of quarks. Because of its success in explaining a wide variety of experimental results, the Standard Model is sometimes regarded as a theory of almost everything. Mathematically, the standard model is a quantized Yang-Mills theory. Therefore, the Standard Model falls short of being a complete of fundamental fields. It neither explains force hierarchy nor predicts the structure of the universe. Fortunately, Unified Field Theory (UFT) explains fundamental forces and structures of sub-atomic particles and grand universe. One of the important applications of the Unified Field Theory is that the mass of each sub-atomic particle has a formula. These formulas are structural formulas which can calculate mass of the particles. The mass of a particle decides its structure and characteristics.

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What this paper is about

The Standard Model of particle physics is a concerning electromagnetic, weak, and strong nuclear interactions, which mediate the dynamics of known subatomic particles. The current formulation was finalized based on the existence of quarks. Because of its success in explaining a wide variety of experimental results, the Standard Model is sometimes regarded as a theory of almost everything. Mathematically, the standard model is a quantized Yang-Mills theory. Therefore, the Standard Model falls short of being a complete of fundamental fields. It neither explains force hierarchy nor predicts the structure of the universe. Fortunately, Unified Field Theory (UFT) explains fundamental forces and structures of sub-atomic particles and grand universe. One of the important applications of the Unified Field Theory is that the mass of each sub-atomic particle has a formula. These formulas are structural formulas which can calculate mass of the particles. The mass of a particle decides its structure and characteristics.

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Available abstract

The Standard Model of particle physics is a concerning electromagnetic, weak, and strong nuclear interactions, which mediate the dynamics of known subatomic particles. The current formulation was finalized based on the existence of quarks. Because of its success in explaining a wide variety of experimental results, the Standard Model is sometimes regarded as a theory of almost everything. Mathematically, the standard model is a quantized Yang-Mills theory. Therefore, the Standard Model falls short of being a complete of fundamental fields. It neither explains force hierarchy nor predicts the structure of the universe. Fortunately, Unified Field Theory (UFT) explains fundamental forces and structures of sub-atomic particles and grand universe. One of the important applications of the Unified Field Theory is that the mass of each sub-atomic particle has a formula. These formulas are structural formulas which can calculate mass of the particles. The mass of a particle decides its structure and characteristics.

Key concepts: Subatomic particle, Standard Model (mathematical formulation), Physics, Unified field theory, Fundamental interaction, Elementary particle, Theoretical physics, Quark

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