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Overunity Machines Forum



HHO Generation using High Frequency electromagnetic waves on water

Started by Panos25, February 24, 2016, 10:25:55 AM

Previous topic - Next topic

0 Members and 3 Guests are viewing this topic.


kolbacict

40 nanometer slit ...
Interestingly, the released carbon will be   closed that small gap.short circuit.
water enthalpy 285 vs 394 CO2
Let H2S dissociate first ...

Sergh

Another possibility is to recover from CO2 to CO (carbon monoxide). It is also combustible, like hydrogen.

http://www.youtube.com/watch?v=QQgrMtAydIU

lancaIV

Interestant,really interestant :


https://wp.icmm.csic.es/wp-content/uploads/sites/32/2015/06/JPCL2010.pdf


by ORMES elementar state https://www.samueljones.org/en/ormus_patent.html   detection process view

f.e.
Subsequent annealing produces the G-ORME


The G-ORME has an electron rearrangement whereby it acquires a d orbital hole or holes which share energy with an electron or electrons.This pairing occurs under the influence of a magnetic field external to the field of the electrons.


G-ORM Es are stable and possess strong interatomic repulsive magnetic forces, relative to their attractive forces


G-ORME stability is demonstrated by unique thermal and chemical properties


The white saltlike material that is formed from G-ORM Es after treatment with halogens, and the white oxide appearing material formed when G-ORM Es are treated with fuming HC 104 or fuming H 2504 are dissimilar from the T-metal or its salts


The G-ORME will not react with cyanide, will not be dissolved by aqua regia, and will not wet or amalgamate with mercury It also does not sinter at 800 'C under reducing conditions, and remains an amorphous powder at 12004 C


( not reacting like "normal" gold washing process or "Koenigswasser= Salzsaeure" vulnerable )


These characteristics are contrary to what is observed for metallic gold and/or gold cluster salts


G-ORM Es require a more negative potential than -2 45 V to be reduced, a potential that cannot be achieved with ordinarily known aqueous chemistry.


The strong interatomic repulsive forces are demonstrated in that the G-ORM Es remain as a powder at 1200 'C.
"normal" gold melt-point : 1064° C


This phenomenon results from cancelling of the normal at- tractive forces arising from the net interaction between the shielded, paired electrons and the unshielded, unpaired s and d valence electrons

https://en.wikipedia.org/wiki/Valence_electron

https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=19980305&CC=DE&NR=19637710A1&KC=A1

G-ORM Es have no unpaired valence electrons and, therefore, tend not to aggregate as would clusters of gold which have one or more unpaired valence electrons.

https://en.wikipedia.org/wiki/Transition_metal detector/mining ?!

                                           
                                                       elektret                    chemtret

                                                  "normal"/( f.e. G-) ORM(es)  spectrometer profile ?

He sended the probes to U.S.S.R,today F.R.R. or RF for Russian Federation !


( My assumption,could also be Ucraine/Kiev or other Ex-U.S.S.R. estates . By research interest: who received the probes and studied by which scopic process and scale ?)






https://www.newsweek.com/scientists-melt-gold-room-temperature-1226339#:~:text=Most%20metals%20have%20very%20high,melt%20gold%20at%20room%20temperature.


Gold and other chemical elements !








Quanten pair ,pair = "Zustaende/BEING", in-/stable






Physikalischer Zustand Der Unumkehrbarkeit


Physikalischer Zustand Der    Umkehrbarkeit




Rectenna/Nantenna with ordinary metals and/or transition metals

kolbacict

In the decomposition of water,unlike of other projects  I have hope for success, because molecular bonds are quantum things. And there various miracles can happen. :)
Although it has not yet been possible to create a high-intensity electric field in water.
A conductor of electric current, after all. And carbon dioxide, like many other things, a dielectric, is easier with it. As a child, I myself received ozone between two glass tubes with two electrodes.
In a Dielectric, a molecule can be broken apart by a sufficiently strong electric field. Ozone is an example of this. But how do you do it with water? There was hope for high frequencies, but they are also absorbed by water.

And what about water above the critical temperature, it loses its electrical conductivity?