ISSN 2227-3123
Vol. 27, Issue 1, 2018November 01, 2018 CEST
Increase of an Anti-Stokes Peak at the Cathode of an Electrically Driven, Active Aqueous Nickel/H2O/Pt System
Increase of an Anti-Stokes Peak at the Cathode of an Electrically Driven, Active Aqueous Nickel/H2O/Pt System
Mitchell R. Swartz,
Articles in Vol. 27, Issue 1, 2018
Vol. 27, Issue 1, 2018
- Nuclear Metamorphosis in Mercury: Rare Earths ProductionF. CardoneG. AlbertiniD. BassaniG. CherubiniF. RosettoE. GuerrieroR. MignaniM. MontiV. SalaA. PetrucciA. RosadaE. SantoroF. RidolfiG. Spera
- Improved Stability and Performance of Surface-Modified Constantan Wires, by Chemical Additions and Unconventional Geometrical StructuresFrancesco CelaniB. OrtenziS. PellaA. SpalloneG. VassalloE. PurchiS. FiorillaL. NotargiacomoC. LorenzettiA. CalaonM. NakamuraA. NuvoliP. CirilliP. Boccanera
- Increase of an Anti-Stokes Peak at the Cathode of an Electrically Driven, Active Aqueous Nickel/H2O/Pt SystemMitchell R. Swartz
- On the Experiment that Could Answer the Question Whether the Like Charged Particles, with Relative Velocity Close to Zero, Repel or Attract?I. N. Tukaev
- Analysis of Martian Nuclear Spacecraft Powered by Low Energy Nuclear Reactions (LENRs)Tae Ho Woo
- Observation of Non-exponential Decay in X-ray and γ Emission Lines from Co-57Florian MetzlerPeter HagelsteinSiyuan Lu
- Phonon-mediated Nuclear Excitation TransferPeter Hagelstein
Swartz, Mitchell R. 2018. “Increase of an Anti-Stokes Peak at the Cathode of an Electrically Driven, Active Aqueous Nickel/H2O/Pt System.” Journal of Condensed Matter Nuclear Science 27 (1): 22–29. https://doi.org/10.70923/001c.72476.