In water electrolysis, oxidation occurs at the anode where oxygen atoms break down as metal dissolves into ionic states, while reduction occurs at the cathode where hydrogen atoms deposit with the metal, creating a charge separation process that produces hydrogen molecules and metal hydrides through natural electrochemical reactions.
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explaining the magnetic electrochemistry of Hydrogen and oxygen charge separation of phase shifts
Added:All right. Look at this.
Isn't it beautiful?
Just the like the changes of how it goes from light blue on the top, right?
And then you go to absolute pure like What is that? Royal blue?
And then you notice the black in between.
And then you have legitimate teal to teal green.
And this happens every time and it's part of the process of a magnetochemistry um phase shift um galvanization processes like so it well it's part of oxidization and galvanization essentially, but it's also a part of the phase shift uh chemistry molecule oxidization uh and evaporation charge separation of [snorts] evaporation over time.
And it's how nature works.
And it's the magic of well, water and the phases of water and the processes of uh ionization through uh evaporation and um well, essentially uh sublimation out of a reaction of the electrode uh anode um cathode anode uh sacrificial anode. So, the uh dissolving of the solid with the breakdown of solid state elements into uh liquid ionic states in the water and the uh deposition of oxidization on the anode side >> [snorts] >> being in this case the copper pipe that we have going all the way down there and then the cathode side being this aluminum rod here going in and these the deposition depositing of the hydride um gel aerogel, right? So um different aerogels hydrogen molecules, okay?
uh being deposited off of the electrolysis reaction of breakdown of water, okay?
H2O, so on the anode side you're getting the oxidization, that's the oxygen atoms breaking down uh as the metal deposits out and then on or dep dissolves, sorry, the metal dissolves into ionic water state.
On the cathode, you have the hydrogen atom okay?
uh depositing with the metal.
Okay, so as metal uh reacts, it breaks down, but instead of dissolving from that charge separation, it's it's adding onto uh the depositing onto the metal, right?
>> [snorts] >> That's how you're getting metamaterial single atom states of each molecule of solids nano single atom, right?
of oxides and hydrides in metamaterial states, all right? Without needing no magic. It's how nature works.
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