Information Weight and Effective Gravitational Coupling in a Finite WRRA Model: Response sufficiency and stability under finite address restrictions

A finite WRRA response-information study. Explicit preparations preserve the inherited weighted carrier snapshot yet have different load susceptibilities. The manuscript distinguishes joint and clamped equilibration, derives the positive-Hessian stability criterion, identifies sufficient load-class information, and states the condition for a scalar effective gravitational coupling. Version 0.3 adds a preparation comparison table, standalone carrier/load explanation, matrix interpretation and a proposed finite-lattice application. Includes executable reproduction materials and an internal Astra Medium review; not external peer review or journal acceptance. Absolute Newtonian normalization remains a calibration input. GitHub: https://github.com/Wonsik-Choi-janefather/wrra-m-0.1/tree/main/submission/information_weight_v0_3

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-09
DOI
https://doi.org/10.5281/zenodo.23270997
Primary Topic
Relativity and Gravitational Theory
Type
preprint
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preprint

Information Weight and Effective Gravitational Coupling in a Finite WRRA Model: Response sufficiency and stability under finite address restrictions

Wonsik Choi, Jeongin Choi
Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
preprint

Information Weight and Effective Gravitational Coupling in a Finite WRRA Model: Response sufficiency and stability under finite address restrictions

Wonsik Choi, Jeongin Choi
preprint en

Abstract

A finite WRRA response-information study. Explicit preparations preserve the inherited weighted carrier snapshot yet have different load susceptibilities. The manuscript distinguishes joint and clamped equilibration, derives the positive-Hessian stability criterion, identifies sufficient load-class information, and states the condition for a scalar effective gravitational coupling. Version 0.3 adds a preparation comparison table, standalone carrier/load explanation, matrix interpretation and a proposed finite-lattice application. Includes executable reproduction materials and an internal Astra Medium review; not external peer review or journal acceptance. Absolute Newtonian normalization remains a calibration input. GitHub: https://github.com/Wonsik-Choi-janefather/wrra-m-0.1/tree/main/submission/information_weight_v0_3

Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
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