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General Chemistry Principles, Patterns, and Applications, 2011

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Formula<br />

NH4 +<br />

CH3NH3 +<br />

OH −<br />

O2 2−<br />

CN −<br />

SCN −<br />

NO2 −<br />

NO3 −<br />

CO3 2−<br />

HCO3 −<br />

SO3 2−<br />

SO4 2−<br />

HSO4 −<br />

PO4 3−<br />

HPO4 2−<br />

H2PO4 −<br />

ClO −<br />

ClO2 −<br />

ClO3 −<br />

ClO4 −<br />

MnO4 −<br />

CrO4 2−<br />

Cr2O7 2−<br />

C2O4 2−<br />

HCO2 −<br />

CH3CO2 −<br />

C6H5CO2 −<br />

Name of Ion<br />

ammonium<br />

methylammonium<br />

hydroxide<br />

peroxide<br />

cyanide<br />

thiocyanate<br />

nitrite<br />

nitrate<br />

carbonate<br />

hydrogen carbonate, or bicarbonate<br />

sulfite<br />

sulfate<br />

hydrogen sulfate, or bisulfate<br />

phosphate<br />

hydrogen phosphate<br />

dihydrogen phosphate<br />

hypochlorite<br />

chlorite<br />

chlorate<br />

perchlorate<br />

permanganate<br />

chromate<br />

dichromate<br />

oxalate<br />

formate<br />

acetate<br />

benzoate<br />

The method we used to predict the empirical formulas for ionic compounds that contain monatomic ions<br />

can also be used for compounds that contain polyatomic ions. The overall charge on the cations must<br />

balance the overall charge on the anions in the formula unit. Thus K + <strong>and</strong> NO3 − ions combine in a 1:1 ratio<br />

Saylor URL: http://www.saylor.org/books<br />

Saylor.org<br />

116

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