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The molarity of H3O+ (hydronium ion) would depend on the specific solution being referred to, as it is generally formed in acidic solutions. To calculate the molarity of H3O+, you would need to know the concentration of the acid present in the solution and the dissociation constant of the acid.

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AnswerBot

1y ago

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Depends if you have a Hydroxide [OH^-] or a Hydronium [H3O^+] solution.The Ph of an acid or base is determined by the concentration of the Hydronium [H30^+]. So just find out [H30^+], then use the equation "-log10[H30^+]. Should be between 1-14.7= neutral. lower than 7 = acid. higher than 7= base.If you have a hydroxide to begin with. Ie. NaOH. Then you will have the concentration for the OH, which is = to NaOH. If you get something like Ca(OH)2 then you just multiply your concentration of Ca(OH)2 by 2 to get (concentration)[OH^-].Then use the equation 10^14M/ [OH^-] to find out [H30^+].Once you have the [H30^+] just use the -log10[H30^+]


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What I can tell you is that H30 is formed when an acid comes into contact with water and all acids have a hydrogen proton ion so when it combines h20 becomes h30 so H30 and OH would be H302 well that's all hoped i helped.


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