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February 11, 20260 citationsOpen Access

A GNSS-Based Experimental Test of Thermal Relativity (TR): Direct Measurement of Proper Time Lag as an Ordering Response

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TRT. Matthew Ressler

Key Points

  • The study aims to test Thermal Relativity (TR) by measuring proper time lag in relation to spatial ordering responses.
  • Utilized existing GNSS clock-comparison infrastructure to conduct measurements.
  • Isolated residual proper-time deviations after subtracting General Relativity predictions.
  • Assessed correlation between proper-time deviations and gradients in the ordering response.
  • Observed residual proper-time deviations aligned with spatial gradients.
  • Confirmed internal consistency of the lattice framework using a Boltzmann-style causal solver.
  • Provided a falsifiable pathway for future observations grounded in first-principles.

Abstract

This paper presents a GNSS-based experimental test of Thermal Relativity (TR), in which gravity is defined as a measured response arising from spatial gradients in a lattice’s ordering response to free thermal energy forcing. Using existing GNSS clock-comparison infrastructure, the experiment isolates residual proper-time deviations after subtraction of General Relativity predictions and tests whether these residuals correlate with gradients in the ordering response. The work provides a falsifiable observational pathway grounded in a first-principles, capacity-limited lattice framework whose internal consistency has been independently certified by a Boltzmann-style causal solver.

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Cite This Study

T. Matthew Ressler (2026) studied this question.

synapsesocial.com/papers/698c1c22267fb587c655e61ahttps://doi.org/10.5281/zenodo.18560387
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