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ISSN 2227-3123
Research Article
Vol. 31, Issue 1, 2020February 01, 2020 CEST

The Eyring Rate Theory Applied to Cold Fusion

Melvin H. Miles, Iraj Parchamazed,
Activation energyActivation entropyDeuteriumDiffusionPalladiumReaction zones
https://doi.org/10.70923/001c.72537

Articles in Vol. 31, Issue 1, 2020

Vol. 31, Issue 1, 2020
  • Plasmonic Field Enhancement at Oxide/Metal Interfaces for Condensed Matter Nuclear Fusion
    Katsuaki Tanabe
  • Investigations of “Heat after Death”
    Mitchell R. Swartz
  • A Tale of Two Journals
    Pamela A. Mosier-BossLawrence P. Forsley
  • The Eyring Rate Theory Applied to Cold Fusion
    Melvin H. MilesIraj Parchamazed
  • Alternatives to Calorimetry
    Fabrice DavidJohn Giles
  • Heavy Electron Catalysis of Nuclear Reactions
    Anthony 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 CMNS
    Victor ChristiantoFlorentin SmarandacheYunita Umniyati
  • On Enhancement of Transmission Probability through a High Potential Barrier Due to an Anti-Zeno Effect
    V. A. NamiotL.Yu. Shchurova
  • Atomic Nuclei Binding Energy: Case of 26Fe Isotopes
    Philippe Hatt
JCMNS
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.
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