QUESTION IMAGE
Question
- write the formula for mercury (ii) bromide (0.5 points) *
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- write the formula for copper (i) oxide (0.5 points) *
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- write the formula for cobalt (iii) chloride (0.5 points) *
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- write the formula for lead (iv) oxide (0.5 points) *
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Step1: Determine the ions
- Mercury (II) has a charge of \(Hg^{2+}\), bromide has a charge of \(Br^{-}\).
- Copper (I) has a charge of \(Cu^{+}\), oxide has a charge of \(O^{2 -}\).
- Cobalt (III) has a charge of \(Co^{3+}\), chloride has a charge of \(Cl^{-}\).
- Lead (IV) has a charge of \(Pb^{4+}\), oxide has a charge of \(O^{2 -}\).
Step2: Balance the charges
- For \(Hg^{2+}\) and \(Br^{-}\): To balance the charge, we need 2 \(Br^{-}\) ions for each \(Hg^{2+}\) ion.
- For \(Cu^{+}\) and \(O^{2 -}\): To balance the charge, we need 2 \(Cu^{+}\) ions for each \(O^{2 -}\) ion.
- For \(Co^{3+}\) and \(Cl^{-}\): To balance the charge, we need 3 \(Cl^{-}\) ions for each \(Co^{3+}\) ion.
- For \(Pb^{4+}\) and \(O^{2 -}\): To balance the charge, we need 2 \(O^{2 -}\) ions for each \(Pb^{4+}\) ion.
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- \(HgBr_{2}\)
- \(Cu_{2}O\)
- \(CoCl_{3}\)
- \(PbO_{2}\)