EGESB-G2 Paper V: Falsifiable Predictions, Open Problems Register, and Research Roadmap
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| Natura: | Recurso digital |
| Lingua: | inglese |
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Zenodo
2026
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| _version_ | 1866901107687555072 |
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| author | Brigo, Galliano |
| author_facet | Brigo, Galliano |
| contents | <p>Abstract<br>We present the complete set of falsifiable predictions derived from the EGESB-G2<br>framework (Papers I-IV), together with the open problems register and a structured<br>research roadmap. Fourteen quantitative predictions span five experimental domains:<br>particle physics (LHC, FCC-ee), cosmology (DESI, Euclid, Rubin LSST), gravitational<br>physics (Eot-Wash sub-mm experiments, pulsar timing arrays), astrophysics (SPARC,<br>JWST, ALMA), and medical imaging (G2-TRI). Each prediction is presented with its<br>numerical value, the experimental test, the timeline, and the conditions under which the<br>prediction would falsify the framework. The open problems register classifies 31 problems<br>by resolution status: 12 resolved, 6 partially resolved, and 13 open. A self-referentiality audit<br>explicitly identifies four unresolved circular dependencies that constitute the primary<br>theoretical uncertainties. Scientific integrity requires that any prediction falsified by<br>observation leads to revision or rejection of the corresponding part of the framework.<br>Keywords: falsifiable predictions, open problems, research roadmap, DESI, Euclid, LHC,<br>SPARC, G2-TRI, dark energy, Kaluza-Klein, Eot-Wash, self-referentiality audit</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18990091 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | EGESB-G2 Paper V: Falsifiable Predictions, Open Problems Register, and Research Roadmap Brigo, Galliano falsifiable predictions open problems DESI Euclid LHC SPARC G2-TRI dark energy Kaluza-Klein Eot-Wash self-referentiality audit <p>Abstract<br>We present the complete set of falsifiable predictions derived from the EGESB-G2<br>framework (Papers I-IV), together with the open problems register and a structured<br>research roadmap. Fourteen quantitative predictions span five experimental domains:<br>particle physics (LHC, FCC-ee), cosmology (DESI, Euclid, Rubin LSST), gravitational<br>physics (Eot-Wash sub-mm experiments, pulsar timing arrays), astrophysics (SPARC,<br>JWST, ALMA), and medical imaging (G2-TRI). Each prediction is presented with its<br>numerical value, the experimental test, the timeline, and the conditions under which the<br>prediction would falsify the framework. The open problems register classifies 31 problems<br>by resolution status: 12 resolved, 6 partially resolved, and 13 open. A self-referentiality audit<br>explicitly identifies four unresolved circular dependencies that constitute the primary<br>theoretical uncertainties. Scientific integrity requires that any prediction falsified by<br>observation leads to revision or rejection of the corresponding part of the framework.<br>Keywords: falsifiable predictions, open problems, research roadmap, DESI, Euclid, LHC,<br>SPARC, G2-TRI, dark energy, Kaluza-Klein, Eot-Wash, self-referentiality audit</p> |
| title | EGESB-G2 Paper V: Falsifiable Predictions, Open Problems Register, and Research Roadmap |
| topic | falsifiable predictions open problems DESI Euclid LHC SPARC G2-TRI dark energy Kaluza-Klein Eot-Wash self-referentiality audit |
| url | https://doi.org/10.5281/zenodo.18990091 |