M. Swartz, P. Hagelstein
Abstract
A self-contained, preloaded CF/LANR quantum electronic component, a NANOR®-type LANR device containing active ZrO2–PdD nanostructured material at its core, showed energy gain during, and after, the January, 2012 IAP MIT Course on CF/LANR. The Series VI two terminal device featured new composition, structure, and superior handling properties. Most importantly it was preloaded so that LANR activation is separated from loading. The calorimeter had parallel diagnostics, including heat flow measurement, and calibrations included an ohmic (thermal) control located next to the NANOR®-type device. The preloaded LANR device demonstrated energy gain which ranged generally from 5 to 16. It was 14.1 energy gain while the MIT IAP course was ongoing. During February and March, through a range of experiments, the NANOR® continued to produce excess energy, confirmed by daily calibrations. This open demonstration has confirmed the existence, reproducibility, and improved control of CF/LANR reactions, and as importantly, has shown a possibly superior preloaded nanostructured LANR material and driving device.
Citation format
SWARTZ, M.; HAGELSTEIN, P. Demonstration of energy gain from a preloaded zro2–pdd nanostructured CF/LANR quantum electronic device at MIT. Journal of Condensed Matter Nuclear Science, 2014.