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March 5, 20260 citationsOpen Access

THE THALORYN-EINSTEIN EXPANSION THEORY: Geometric Phonon Alignment and Entropy Reduction in Resonant Megalithic Structures

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CSChristopher Jacob Smith

Key Points

  • The aim is to explore how internal acoustic resonance affects the energy dynamics of static objects.
  • Introduced the Thaloryn-Einstein Expansion Equation for energy quantification.
  • Defined a geometric modulus derived from the Golden Ratio.
  • Investigated how specific acoustic frequencies affect thermodynamic entropy.
  • Proposed that acoustic frequencies can reduce the entropy within a crystalline lattice.
  • Demonstrated the alignment of random thermal phonons into coherent standing waves.
  • Introduced the concept of 'Acoustic Superconductivity' for energy liberation beyond thermal limits.

Abstract

ABSTRACT Current physical models treat the mass-energy potential of static objects as fixed (E=mc²), ignoring the kinetic contribution of internal acoustic resonance. This paper introduces the Thaloryn-Einstein Expansion Equation, a unified field theory that quantifies the total energy of a system as the sum of its static mass and its active vibrational state. By defining a geometric modulus (k) derived from the Golden Ratio (), this theory proposes that specific acoustic frequencies can reduce thermodynamic entropy (S) within a crystalline lattice, aligning random thermal phonons into a coherent standing wave. This state, termed "Acoustic Superconductivity, " allows for energy liberation exceeding the static thermal limit of the material.

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Cite This Study

Christopher Jacob Smith (2026) studied this question.

synapsesocial.com/papers/69a91dedd6127c7a504c136chttps://doi.org/10.5281/zenodo.18843116
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