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Overunity Machines Forum



Barbat low inertial mass generator

Started by tak22, April 21, 2007, 06:17:33 PM

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0 Members and 2 Guests are viewing this topic.

MrMag

What about ferric acid which is used to etch circuit boards. I put some wire in it for a few seconds and then rinsed it off. The wire is black, but is it the right black??

Rosphere


hansvonlieven

When all is said and done, more is said than done.     Groucho Marx

karl

Hi all,
does black mean massive photon materials surface interaction due to absorption of heat?
Does the color change over thickness periodically while growing up the toplayer?
Then the layer is translucent. Where do you want to get photon (IR?)interaction. On the outer surface or in the intermediate layer Cu/CuxOy?
kaRL 

hansvonlieven

G'day Gentlemen,

In Barbat's patent it states:

[0100] The inductive photons 22 radiating from the sending coil 20 propagate to an energy-magnifying coil 24 that desirably has a cylindrical profile extending parallel to the sending coil. In the embodiment shown in FIGS. 1(A) and 1(B), the energy-magnifying coil 24 does not terminate at the ends, but rather it is constructed with a connector 30 to form a continuous conductor. The energy-magnifying coil 24 desirably is a helical coil made of a material comprising a photoconductive or superconductive material, or other suitable material. If necessary or desired, the energy-magnifying coil can be formed on a substrate that, if used, desirably is transmissive to the inductive-photon radiation produced by the coil.

Further on it says:

[0004] Applicant has deduced that Leimer's energy magnification most likely was due to low-mass electrons that were liberated and made conductive in the antenna by alpha radiation, which allowed these special electrons to be given a greater-than-normal acceleration by the received radio-broadcast photons. Applicant has further deduced that such low-mass electrons must have originated in a thin-film coating of cupric oxide (CuO) on the antenna wire. CuO is a dull-black, polycrystalline, semiconducting compound that develops in situ on copper and bronze wire in the course of annealing the wire in the presence of air. Such CuO coatings have been observed by Applicant on historical laboratory wire at the Science Museum at Oxford University, U.K., and on copper house wire of that era in the U.S., indicating that CuO coatings were commonplace. In later years, annealing has taken place under conditions that prevent most oxidation. This is followed by acid treatment to remove any remaining oxides, leaving shiny wire.

As far as I know cupric oxide has no such properties. Cuprous oxide has.What, if anything, am I missing here?

Karl, you seem to have a lot of experience with semiconducting layers, what is your take on this?

Hans von Lieven
When all is said and done, more is said than done.     Groucho Marx