The Liquid Spinor Vacuum Framework: Prediction of Space Probe Anomalies
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2026
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| _version_ | 1866901782304653312 |
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| author | Palla, Artemiusz Emil |
| author_facet | Palla, Artemiusz Emil |
| contents | <div> <p>This paper presents a rigorous derivation of the anomalous acceleration of space probes (<span>a_p</span>) directly from the general McCulloch-Palla Inertia Equation (MPIE). We demonstrate that the so-called "Pioneer Anomaly" is not a thermal effect but a measurable chronodynamic drift resulting from the material restitution of the ETOM lattice (<span>1-8alpha</span>). We present explicit numerical calculations that close the Pioneer 10/11 result with <span>10^-12 m/s^2</span> precision and provide blind predictions for upcoming data from the Voyager missions and Flyby maneuvers, serving as the definitive test for the Supersolid ontology.</p> </div> <div>This is version 1.0 uploaded on 09 March 2026 as a blind prediction ahead of expected NASA announcement. Detailed ab initio derivations of H₀ and the solar cavitation invariant R_s · R = 0.263 AU will be included in v1.1 following verification of predictions.</div> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18925793 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Liquid Spinor Vacuum Framework: Prediction of Space Probe Anomalies Palla, Artemiusz Emil Pioneer Anomaly Voyager Anomaly Flyby Anomaly Deep Space Network (DSN) New Horizons mission Liquid Spinor Vacuum (LSV) <div> <p>This paper presents a rigorous derivation of the anomalous acceleration of space probes (<span>a_p</span>) directly from the general McCulloch-Palla Inertia Equation (MPIE). We demonstrate that the so-called "Pioneer Anomaly" is not a thermal effect but a measurable chronodynamic drift resulting from the material restitution of the ETOM lattice (<span>1-8alpha</span>). We present explicit numerical calculations that close the Pioneer 10/11 result with <span>10^-12 m/s^2</span> precision and provide blind predictions for upcoming data from the Voyager missions and Flyby maneuvers, serving as the definitive test for the Supersolid ontology.</p> </div> <div>This is version 1.0 uploaded on 09 March 2026 as a blind prediction ahead of expected NASA announcement. Detailed ab initio derivations of H₀ and the solar cavitation invariant R_s · R = 0.263 AU will be included in v1.1 following verification of predictions.</div> |
| title | The Liquid Spinor Vacuum Framework: Prediction of Space Probe Anomalies |
| topic | Pioneer Anomaly Voyager Anomaly Flyby Anomaly Deep Space Network (DSN) New Horizons mission Liquid Spinor Vacuum (LSV) |
| url | https://doi.org/10.5281/zenodo.18925793 |