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April 4, 20260 citationsOpen Access

Derivation of the Real Coefficient of the Mass-Energy Equation

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JYJiaqing Yan

Key Points

  • The aim is to derive the real coefficient of mass-energy conversion and redefine the existing mass-energy equation.
  • Combined modern experimental data with theoretical analysis.
  • Conducted precise measurements of microscopic particles like electrons, protons, and neutrons.
  • Reevaluated the implications of the speed of light in mass-energy relationships.
  • Derived a new coefficient for mass-energy conversion.
  • Redefined the mass-energy and energy-mass equations.
  • Clarified the relationship between mass, energy, and the speed of light.

Abstract

In the research system of cosmic physics, mass-energy conversion is the core law that interprets the essential relationship between matter and energy. The mass-energy equation E=mc² proposed by Einstein has laid the foundation for humans to understand this law. However, due to the limitations of cognitive level and research perspective in his era, it failed to reach the physical essence of mass-energy conversion. Combined with modern experimental data and research on the underlying laws of cosmic physics, through precise measurement of microscopic particles such as electrons, protons and neutrons, we derive the real coefficient of mass-energy conversion, redefine the mass-energy equation and energy-mass equation, clarify the true meaning of the speed of light in the mass-energy relationship, and consolidate the core viewpoint that mass and energy share the same origin, interconvert and coexist cyclically from both experimental and theoretical aspects.

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Cite This Study

Jiaqing Yan (2026) studied this question.

synapsesocial.com/papers/69d0af83659487ece0fa5779https://doi.org/10.5281/zenodo.19379475
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