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Research Article
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

Mitchell R. Swartz,
Anti-StokesCMORE spectroscopyExcess heat modeLattice assisted nuclear reactionsNickel/H2O/PtPhonon gainPHUSOR􏰅-type componentSpectroscopy
https://doi.org/10.70923/001c.72476
JCMNS
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.
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