JMP0X1B Research

Paper 039 / June 14, 2026

Null Experiments for Laboratory Cogravity with Symmetry-Matched Moving Masses

A falsification-first protocol for rotating, translating, and modulated dense sources

01 / Abstract

Abstract

This proposal designs laboratory cogravity experiments as null-bounding and artifact-classification studies. It gives a signal model with an effective amplitude beta_C, explains why the strict Jefimenko-scale signal from ordinary rotors is far below near-term tabletop sensitivity, and defines a reversal-controlled run matrix for rotating and translating source masses. The deliverable is not a breakthrough claim; it is a signed likelihood over beta_C, nuisance templates, and failed controls suitable for a JMP0X1B null ledger.

02 / Frame

Research Frame

This landing page publishes the paper as an auditable source bundle. The PDF carries the full mathematical argument, claims, evidence plan, implementation surface, and release notes.

\[ y(t)=\beta_C S_C(t)+\sum_i \theta_i N_i(t)+\epsilon(t), \]
\[ K_{\rm lab}\sim \frac{G L}{2c^2r^3}. \]

03 / Structure

Paper Structure

The manuscript follows the JMP0X1B discipline: state the problem, formalize the model, name the claims, and publish enough source material for review and revision.

01 / Problem

This section is included in the source manuscript and the PDF build for review.

02 / Model

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03 / Claims

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04 / Evidence Plan

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04 / Files

Paper Files

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