QUESTION IMAGE
Question
fill in the name and empirical formula of each ionic compound that could be formed from the ions in this table:
some ionic compounds
cation anion empirical formula name of compound
$co^{3 + }$ $br^{-}$
$co^{2 + }$ $br^{-}$
$k^{+}$ $br^{-}$
$ca^{2 + }$ $br^{-}$
Step1: Determine formula for $Co^{3 +}$ and $Br^{-}$
The charges must balance. For $Co^{3+}$ and $Br^{-}$, we need 3 $Br^{-}$ ions to balance the + 3 charge of $Co^{3+}$. So the empirical formula is $CoBr_{3}$. The name is cobalt(III) bromide.
Step2: Determine formula for $Co^{2+}$ and $Br^{-}$
We need 2 $Br^{-}$ ions to balance the + 2 charge of $Co^{2+}$. So the empirical formula is $CoBr_{2}$. The name is cobalt(II) bromide.
Step3: Determine formula for $K^{+}$ and $Br^{-}$
The charges are + 1 and - 1, so the empirical formula is $KBr$. The name is potassium bromide.
Step4: Determine formula for $Ca^{2+}$ and $Br^{-}$
We need 2 $Br^{-}$ ions to balance the + 2 charge of $Ca^{2+}$. So the empirical formula is $CaBr_{2}$. The name is calcium bromide.
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| cation | anion | empirical formula | name of compound |
|---|---|---|---|
| $Co^{2+}$ | $Br^{-}$ | $CoBr_{2}$ | cobalt(II) bromide |
| $K^{+}$ | $Br^{-}$ | $KBr$ | potassium bromide |
| $Ca^{2+}$ | $Br^{-}$ | $CaBr_{2}$ | calcium bromide |