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March 30, 20260 citationsOpen Access

"Defining the Geometric Speed of Light through Double Observation"

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VTVasiliy Tolo

Key Points

  • To develop a conceptual model explaining how geometry influences the speed of light and the structure of the universe.
  • Propose a model based on interaction between two observers
  • Calculate the geometry of light speed through observational systems
  • Investigate the implications of a geometric network on physical phenomena
  • Demonstrated that the speed of light is influenced by geometric relationships
  • Revealed the internal structure of particles through the geometric network
  • Provided insights into the nature of mass, gravity, dark energy, and matter

Abstract

This work presents a revolutionary conceptual model of physical reality, where matter, energy, space, and time emerge from a fundamental phase mismatch between internal and external observation systems. The central element of the study is the calculation of the speed of light geometry through the interaction of two observers — a key insight demonstrating how geometry itself generates the real speed of light. At the core of the model lies a geometric network, functioning as the long-sought ether: the universe is structured through this network, which bridges the macro- and micro-worlds, reveals the emergence and internal structure of particles, and explains the formation of mass, gravity, dark energy, and matter. Through this network, a fundamentally new way of understanding the architecture of the universe is opened, unveiling the hidden structure of matter and providing a foundation for the further development of physical science.

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Cite This Study

Vasiliy Tolo (2026) studied this question.

synapsesocial.com/papers/69ca134b883daed6ee0953cchttps://doi.org/10.5281/zenodo.19236782
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