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Thanks for the video. To clarify the reaction: On the anode side: Fe > Fe++ and 2e-. On the cathode side: O2 + H2O + 4e- > 4OH- ionic reaction is: OH- joining with Fe++. This could be completely wrong. But its youtube comments so i dont care.
Is it Fe(OH) or Fe(OH)3? I am also seeing some sources saying a secondary reaction takes place. The book Automotive Coating Formulation is saying the Fe(OH)3 is "cleaving" water to form iron oxide hydrate Fe2O3 ' H20. I'm not sure what cleaving means.
Video is made fantastically to understand Corrosion at Micro Cell
my book: 3 pages -> did not understad
the vid: 96 secs -> understood!
sameee
Same here! Props to the maker of this vid!
Thanks for the video. To clarify the reaction: On the anode side: Fe > Fe++ and 2e-. On the cathode side: O2 + H2O + 4e- > 4OH- ionic reaction is: OH- joining with Fe++. This could be completely wrong. But its youtube comments so i dont care.
it really helpfull to clear the concept👍
Good explaination, good animation.
Perfect explaining
this video saved me in class as in it was the only thing i had to present and i got full marks
Awesome video!
Thank you. This was helpful.
CORROSION!
Is it Fe(OH) or Fe(OH)3? I am also seeing some sources saying a secondary reaction takes place. The book Automotive Coating Formulation is saying the Fe(OH)3 is "cleaving" water to form iron oxide hydrate Fe2O3 ' H20. I'm not sure what cleaving means.
thank you so much!!
VWW9-3H98-ZBF9-LPLL-69RL
nice video
Wisdom is rare in Youth and Beauty =). good job
Can you please make video on dry corrosion and hydrogen evolution?
excellent really great hats off keep it up
Awesome video! thanks
Fire! Electricity! CORROSION!
Thanks
I like this video
Does the same process happen to copper? :)
great
that was awesome :)
Anyway, you don't get OH- out of two electrons and a O2.
Oui
same happen with me
Awe
That's so complicated wth
it's Fe(OH)3
wrong. its Fe(OH)2
Lucid
rust is fe2O3 and not feoh.
CORROSION!