In one minute
Mitchell Swartz studies NANOR-type components, hermetically sealed preloaded nanomaterials built as two-terminal electrical parts that can yield significant excess heat. Without magnetisation, their peak excess power gain always fell off slowly and exponentially over time. After exposure to a magnetic field, the activity instead oscillates, with a cyclic component near 1.3 × 10^-4 Hz, within 0.2 to 5 × 10^-4 Hz. This oscillation appears only in magnetised components and only while an electric field drives them. He models remnant magnetic domains in the lattice and uses the Maxwell stress tensor to compute their force density and the expected oscillation frequency.
Oscillating excess power gain and magnetic domains in NANOR-type CF/LANR components
- Mitchell R. Swartz(Author)
Publication and identifiers
- Work type
- Paper
- Year
- 2017
- Identifiers
- Original source links
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- Rights holder
- Journal of Condensed Matter Nuclear Science
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- Original title
- Oscillating excess power gain and magnetic domains in NANOR-type CF/LANR components
- Attribution
- Mitchell R. Swartz(Author)
- Year
- 2017
- Identifiers
- Original source links