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Published October 4, 2025 | Version v2

The Fundamentals of Stratophysics

Description

We present Stratophysics, a framework in which deviations from Newtonian gravity are modeled as density-dependent modifications of a scalar field’s effective mass. The resulting force adapts to its environment, being suppressed in dense regions like laboratories or galactic halos, and extending over larger distances in low-density regions such as cosmic voids. Laboratory constraints set the local scalar mass, which can then be conditionally mapped to astrophysical scales, allowing a first look at how density-dependent screening might influence galaxies and cosmic structures.

Technical info (English)

This work is exploratory and pedagogical, presenting a novel application of a no-go theorem (The Gravity Amplification Theorem) to construct a self-consistent physics framework. Starting from foundational ideas, the theorem’s constraints guided rapid development, producing a structured, coherent model within clearly defined limits. AI-assisted reasoning was used to organize and implement the framework, while the conceptual structure, methodology, and workflow remain the author’s original contributions. Although this work does not claim new fundamental physics, it demonstrates how physics frameworks can be systematically developed with clear, structured rules and made accessible for educational purposes. Readers are encouraged to adapt, extend, and build upon this framework with proper attribution, contributing to a growing open educational ecosystem. This material is released under CC BY-SA 4.0 International.

Notes (En)

Please note that I’ve updated the Zedono file with a few minor changes.

 

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Subtitle (En)
Educative Material and Methodology