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March 28, 20260 citationsOpen Access

QSDT: Mathematical Reinterpretation of The Quantum Structural Disintegration Thoery by Sultan Mustafa Sohail.

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SFSultan Mustafa Sohail Family

Key Points

  • This work aims to reinterpret gravity through internal mechanical loads instead of external forces within atomic structures.
  • Mathematical reinterpretation of quantum gravity concepts.
  • Introduction of structural integrity coefficient to describe atomic stability.
  • Analysis of the compression-vibration-heat cycle in massive bodies.
  • Gravity is modeled as an internal graviton load affecting atoms.
  • The structural integrity coefficient evolves based on temperature and pressure.
  • Matter can convert to radiation near singularities when structural integrity approaches zero.

Abstract

The Quantum Structural Disintegration Theory (QSDT) reinterprets gravity not as an external force but as an Internal Graviton Load (Lg) that exerts mechanical stress within atomic structures. This load forces kinetic movement within atoms, generating thermal energy and defining the passage of time. This mathematical reinterpretation introduces a dynamic Structural Integrity Coefficient (σₑff) that evolves through strengthening, weakening, and disintegration phases, with atomic type, temperature, and pressure determining critical load thresholds. The compression-vibration-heat cycle explains internal heating of massive bodies, while singularity resolution occurs when σₑff → 0 and matter converts completely to radiation. The theory bridges quantum mechanics and general relativity by replacing abstract forces with mechanical internal loads.

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Cite This Study

Sultan Mustafa Sohail Family (2026) studied this question.

synapsesocial.com/papers/69c772058bbfbc51511e237chttps://doi.org/10.5281/zenodo.19239715
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