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June 26, 2026Open Access

A Simple Explanation for Why Unexpected Galaxy Rotation Curves Do Not Break Newton's Law of Gravitation

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Authors

JMJames Richard Marsen

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Overview

Demonstrates a framework that clarifies unexpected galaxy rotation curves while upholding Newton's Law of Gravitation.

Key Points

  • The aim is to address the missing mass problem by proposing the Gravitational Potential Relationship Framework (GPRF).
  • Developed a constitutive relationship connecting non-baryonic matter density to local gravitational potential
  • Derived key results by applying algebra to the Yukawa exterior solution without introducing free parameters
  • Predicted observational outcomes such as the Milky Way halo cutoff scale and flat rotation curves.
  • Flat rotation curves are structurally emergent rather than assumptions, correlating with the Yukawa solution
  • Predicted halo cutoff scale matches observations, confirming the GPRF's validity with less than one standard deviation from observed data
  • The GPRF yields distinct predictions differentiating it from MOND and standard cold dark matter (CDM) frameworks.

Cite This Study

James Richard Marsen (2026) studied this question.

synapsesocial.com/papers/6a3e176b030ad1a9b3090e11https://doi.org/10.5281/zenodo.20801488
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