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Overunity Machines Forum



Crystal Power CeLL by John Hutchison

Started by dani, April 26, 2006, 04:11:36 PM

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Feynman

Yeah, I thought the same thing myself when I watched the videos.   ("wow , he has alot of high energy equipment crammed into that tiny apt").

I wouldn't want to be exposed to random scalar waves either.   ;)


dcarlson

03/16/08 - Rock: Electrons Run Through It
New results in Science Express show that a chunk of hematite can conduct electrons under certain chemical conditions. In addition, the current causes some mineral surfaces to build up while others degrade. These results with iron oxide might be important for water quality, soil evolution, and environmental cleanup. "Considering iron as an important nutrient, the finding could help us understand how soils evolve from nutrient rich to nutrient poor," says lead investigator Kevin Rosso, a chemist at the Department of Energy's Pacific Northwest National Laboratory. "And it has implications for other common minerals such as pyrite and manganese oxides -- even particles in the atmosphere." Scientists have long known that electrons can travel through some iron oxides when a voltage is applied, but they have assumed that electrons stemming from chemical reactions alone won't move spontaneously through the mineral's bulk. That long-standing assumption has caused chemists to treat different faces of a hunk of mineral as independent entities that don't 'communicate' with each other. New results, published online March 6, 2008 in Science Express, suggest otherwise. "Now we know reactions at different faces of these minerals can couple together and yield behavior unique to semiconducting minerals," says Rosso. The team wondered if the iron being deposited on the top came from iron dissolving from the sides, building up in solution, and then redepositing. To test this, they separated the six cube surfaces into groups: They took two cubes, protected four sides from the solution on one, and on the other, protected the top and bottom. The acidic solution chewed away the unprotected surfaces, as expected. But the chemists didn't see any buildup on the unprotected top and bottom faces and instead saw degradation. This indicated the breakdown and buildup were not independent of each other. "The hematite won't grow pyramids without that surface being connected to the dissolving ones," says Rosso. The required physical connection hinted at electron conduction. Iron in solution, or Fe(II), contains one more electron than the iron in the crystal, Fe(III). If Fe(II) landed on the top, it might react with the surface, incorporate into the crystal and give up its electron. The electron could then flow through the crystal to the sides, where an atom of Fe(III) could pick up the electron and dissolve into the solution. To prove this, the chemists connected the electron flow with a wire. When they repeated the first experiment but connected the two cubes with a dab of silver, the team restored the pyramid buildup. Additional experiments allowed them to measure the electrical potential driving the current flow, which came out to 200 millivolts -- about 6% of the power needed for a keychain LED light, or about twice as much as in a nerve cell. / (Could there be a connection to 'telluric currents'? - JWD) - Source

jeanna

QuoteAdditional experiments allowed them to measure the electrical potential driving the current flow, which came out to 200 millivolts -- about 6% of the power needed for a keychain LED light, or about twice as much as in a nerve cell. / (Could there be a connection to 'telluric currents'? - JWD) - Source
@dcarlson,
Thank you. I found that a helpful article. And I like the connection to the nerve cell. (I have been thinking about that wrt coilguns this week.)
;) ;)
jeanna


jeanna

Quote from: dcarlson on March 16, 2008, 10:49:01 PM
Thanks, another interesting read. It explained a reason for homogenization too.
Thanks
jeanna