ISSN 2227-3123
Vol. 31, Issue 1, 2020February 01, 2020 CEST
The Eyring Rate Theory Applied to Cold Fusion
The Eyring Rate Theory Applied to Cold Fusion
Melvin H. Miles, Iraj Parchamazed,
Articles in Vol. 31, Issue 1, 2020
Vol. 31, Issue 1, 2020
- Plasmonic Field Enhancement at Oxide/Metal Interfaces for Condensed Matter Nuclear FusionKatsuaki Tanabe
- Investigations of “Heat after Death”Mitchell R. Swartz
- A Tale of Two JournalsPamela A. Mosier-BossLawrence P. Forsley
- The Eyring Rate Theory Applied to Cold FusionMelvin H. MilesIraj Parchamazed
- Alternatives to CalorimetryFabrice DavidJohn Giles
- Heavy Electron Catalysis of Nuclear ReactionsAnthony ZupperoThomas J. Dolan
- Remark on Lehnert’s Revised Quantum Electrodynamics (RQED) as an Alternative to Francesco Celani’s et al. Maxwell–Clifford Equations: With an Outline of Chiral Cosmology Model and its Role to CMNSVictor ChristiantoFlorentin SmarandacheYunita Umniyati
- On Enhancement of Transmission Probability through a High Potential Barrier Due to an Anti-Zeno EffectV. A. NamiotL.Yu. Shchurova
- Atomic Nuclei Binding Energy: Case of 26Fe IsotopesPhilippe Hatt
Miles, Melvin H., and Iraj Parchamazed. 2020. “The Eyring Rate Theory Applied to Cold Fusion.” Journal of Condensed Matter Nuclear Science 31 (1): 49–52. https://doi.org/10.70923/001c.72537.