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Cathode and +
: Cathode ( reduction ): 2 Na < sup >+</ sup >( l ) + 2 e < sup >–</ sup > → 2 Na ( l )
: Cathode ( reduction ): 2 H < sub > 2 </ sub > O ( g ) + 2 e < sup >–</ sup > → H < sub > 2 </ sub >( g ) + 2 OH < sup >–</ sup >( aq )
Cathode: Na < sup >+</ sup >( aq ) + e < sup >–</ sup > → Na ( s ) E °< sub > red </ sub >
Cathode: 2 H < sub > 2 </ sub > O ( l ) + 2 e < sup >–</ sup > → H < sub > 2 </ sub >( g ) + 2 OH < sup >–</ sup >( aq ) E °< sub > red </ sub >
: Cathode ( reduction ): 2 H < sub > 2 </ sub > O ( l ) + 2 e < sup >–</ sup > → H < sub > 2 </ sub >( g ) + 2 OH < sup >–</ sup >( aq )
: Cathode Reaction: O < sub > 2 </ sub > + 4e < sup >–</ sup > → 2O < sup >– 2 </ sup >
: Cathode Reaction: CO < sub > 2 </ sub > + ½O < sub > 2 </ sub > + 2e < sup >-</ sup > → CO < sub > 3 </ sub >< sup >- 2 </ sup >
: Cathode: 4H < sub > 2 </ sub > O + 4e (-) ---> 4OH (-) + 2H < sub > 2 </ sub >( gas )
: Cathode: 1 / 2 O < sub > 2 </ sub > + H < sub > 2 </ sub > O + 2e < sup >–</ sup > → 2OH < sup >–</ sup > ( E < sub > 0 </ sub > =

Reactions and O2
Overall Cell Reactions: 2H2 + O2

Reactions and +
Reactions of acids are often generalized in the form HA H < sup >+</ sup > + A < sup >−</ sup >, where HA represents the acid and A < sup >−</ sup > is the conjugate base.
Reactions such as ++ ( the two-photon annihilation of an electron-positron pair ) are an example.
* Experimental Study of the High-energy Reactions Anti-muon-neutrino e → Antu-muon-neutrino e -, Anti-muon-neutrino N → mu + X in the Gargamelle Bubble Chamber.

O2 and +
* O2 / O2 + workstation
Probably only O2 + ions ( electronic transition ( b4Σg-→ a4Πu )), with green emission lines, is transported by IAW.
Electronic bands of O2 + ion occur in auroral spectra .. Electron-molecular-ion dissociative recombination coefficient rate α as functions of electron temperature Te and cross sections σ as a function of electron energy E have been have measured by Mehr and Biondi for N2 + and O2 + over the electron temperature interval 0. 007-10 eV.
In this temperature, the rate coefficient of dissociative recombination will be respectively α ( Te ) O2 + ~ 10-8 cm3 s-1, and α ( Te ) N2 + ~ 10-7 cm3 s-1.
Therefore, only oxygen ions will be predominant ejected green light balls from a central white ball in HL, presenting negative band of O2 + with electronic transition b4Σg-→ a4Πu after a IAW formation.
SGI O2 + Workstation
The latter is removed or absorbed by capillary action into the hearth linings. This chemical reaction may be viewed as ( Ag + Cu ) + Pb + O2 → ( CuO + PbO ) + Ag

+ and 4H
: 3Mg < sub > 2 </ sub > SiO < sub > 4 </ sub > + 2SiO < sub > 2 </ sub > + 4H < sub > 2 </ sub > O → 2Mg < sub > 3 </ sub >
: CO < sub > 2 </ sub > + 4H < sub > 2 </ sub > → CH < sub > 4 </ sub > + 2H < sub > 2 </ sub > O
:: Mg < sub > 2 </ sub > SiO < sub > 4 </ sub > + 4H < sup >+</ sup > + 4OH < sup >-</ sup > ⇌ 2Mg < sup > 2 +</ sup > + 4OH < sup >-</ sup > + H < sub > 4 </ sub > SiO < sub > 4 </ sub >
:: Mg < sub > 2 </ sub > SiO < sub > 4 </ sub > + 4CO < sub > 2 </ sub > + 4H < sub > 2 </ sub > O ⇌ 2Mg < sup > 2 +</ sup > + 4HCO < sub > 3 </ sub >< sup >-</ sup > + H < sub > 4 </ sub > SiO < sub > 4 </ sub >
:: 2KAlSi < sub > 3 </ sub > O < sub > 8 </ sub > + 2H < sub > 2 </ sub > CO < sub > 3 </ sub > + 9H < sub > 2 </ sub > O ⇌ Al < sub > 2 </ sub > Si < sub > 2 </ sub > O < sub > 5 </ sub >( OH )< sub > 4 </ sub > + 4H < sub > 4 </ sub > SiO < sub > 4 </ sub > + 2K < sup >+</ sup > + 2HCO < sub > 3 </ sub >< sup >-</ sup >
: 2H < sub > 2 </ sub > O + energy → 4H + O < sub > 2 </ sub >
: 2H < sub > 2 </ sub > O → 4e < sup >-</ sup > + 4H < sup >+</ sup > + O < sub > 2 </ sub >
: CO < sub > 2 </ sub > + 4e < sup >-</ sup > + 4H < sup >+</ sup > → CH < sub > 2 </ sub > O + H < sub > 2 </ sub > O
: 3CO < sub > 2 </ sub > + 12e < sup >-</ sup > + 12H < sup >+</ sup > + P < sub > i </ sub > → TP + 4H < sub > 2 </ sub > O

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