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April 14, 20260 citationsOpen Access

Celestial Induction Dynamics: Rotor Dynamics, Field Stress, and Electromagnetic Causality

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IAImran Ali

Key Points

  • The research aims to integrate electromagnetic principles with gravitational phenomena, proposing a new framework for understanding celestial dynamics.
  • Expands the Maxwellian Induction Motor framework for celestial mechanics.
  • Replaces geometric abstractions with the Maxwell Stress Tensor and variable dielectric refraction.
  • Introduces a model of Distributed Electromagnetic Induction, categorizing planets and airless bodies.
  • Demonstrates a mechanical causality for gravitational pressure and time dilation.
  • Aligns observed physical phenomena with a consistent model of non-linear events, such as rotational reversal.
  • Offers a new perspective on orbital stability based on electromagnetic principles.

Abstract

Celestial Induction Dynamics Abstract: Version 2.0 expands the Maxwellian Induction Motor framework of the universe, providing mechanical causality for gravitational pressure, time dilation, and orbital stability. This paper replaces the geometric abstractions of curved space-time with the Maxwell Stress Tensor and variable dielectric refraction. Furthermore, it explores a speculative model of "Distributed Electromagnetic Induction," identifying planets as capacitors and airless bodies as amplifiers. This framework offers a mathematically consistent pathway for non-linear events, such as rotational reversal, aligning observed physical phenomena with the "specified terms" and "means" (Asbab) of a coherent, designed machine.

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Cite This Study

Imran Ali (2026) studied this question.

synapsesocial.com/papers/69ddd9b1e195c95cdefd6fb3https://doi.org/10.5281/zenodo.19543494
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