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Compound states [like (s) (aq) or (g)] are not required. Ionic charges are not yet supported and will be ignored. You can use parenthesis or brackets []. Question. H3PO4 (aq) + NaOH (aq) -> NaH2PO4 (aq) + H2O (l) Write the net ionic equation for the neutralization reaction, assuming this time that phosphoric acid is a strong acid. Replace immutable groups in compounds to avoid ambiguity. For instance equation C6H5C2H5 + O2 = C6H5OH + CO2 + H2O will not be balanced, but PhC2H5 + O2 = PhOH + CO2 + H2O will; Compound states [like (s) (aq) or (g)] are not required. How To Balance Equations

Write the remaining substances as the net ionic equation. Ionic charges are not yet supported and will be ignored. H3PO4(aq) + NaOH(aq) ----> NaH2PO4(aq) + H2O(l) net ionic equation contains only those ions that lead to the formation of a precipitate, either solid, liquid or gas. Phosphoric acid dissociates into hydrogen ions and \$\ce{H2PO4^-}\$ ions in water. For example, C6H5C2H5 + O2 = C6H5OH + CO2 + H2O will not be balanced, but XC2H5 + O2 = XOH + CO2 + H2O will. This then can dissociate further, but \$\ce{H^+}\$ and \$\ce{H2PO4^-}\$ are the primary ionic species you'd find in a phosphoric acid solution. In many cases a complete equation … Compound states [like (s) (aq) or (g)] are not required. H3PO4 is a WEAK acid, thus we should leave it in molecular form.

H3PO4 + NaOH. \$\ce{NaOH}\$ dissociates completely into \$\ce{Na^+}\$ and \$\ce{OH^-}\$ ions. net ionic equation for this is: H+ + OH- --> H2O(l) H3PO4 is a strong acid, or at least the first ionization of it. For example, C6H5C2H5 + O2 = C6H5OH + CO2 + H2O will not be balanced, but XC2H5 + O2 = XOH + CO2 + H2O will. Examples: Fe, Au, Co, Br, C, O, N, F. Ionic charges are not yet supported and will be ignored. If you do not know what products are enter reagents only and click 'Balance'. Replace immutable groups in compounds to avoid ambiguity. The complete, balanced net ionic reaction is : 3Ba+2 + 6OH- + 2H3PO4 ----> 6H2O + Ba3(PO4)2. Ba2+ (aq) + 2 OH- (aq) + H3PO4 (aq)-> 2 H2O (l) + Ba2+ (aq) + HPO4 2- (aq) Then cancel both side that has something in commonwith the identical physical state, only Ba2+ (aq) is common. The balanced equation will appear above. 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