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ionic bonds name the following ionic compounds (rule 1 and 2): 1. nabr …

Question

ionic bonds
name the following ionic compounds (rule 1 and 2):

  1. nabr
  2. cao
  3. li₂o
  4. mgbr₂
  5. mgbr₂
  6. be(oh)₂
  7. fecl₃
  8. pbo
  9. (nh₄)so₄
  10. cos

write the formulas for the following ionic compounds (rule 1 and 2). must show all work!!

  1. potassium iodine
  2. magnesium oxide
  3. aluminum chloride
  4. sodium nitrate
  5. calcium carbonate
  6. lithium sulfate
  7. beryllium phosphide
  8. magnesium hydroxide
  9. cobalt (ii) nitride
  10. chromium (ii) fluoride
  11. sodium phosphate
  12. aluminum carbonate

Explanation:

Step1: Identify ions

For each compound, identify the cation and anion. For example, in potassium iodide, the cation is \(K^{+}\) (potassium ion) and the anion is \(I^{-}\) (iodide ion).

Step2: Apply charge balance

The formula of an ionic compound is determined by balancing the charges of the cations and anions. The overall charge of the compound should be zero.

  • For potassium iodide (\(K^{+}\) and \(I^{-}\)): Since the charges are \(+ 1\) and \(-1\) respectively, the formula is \(KI\) (1:1 ratio).
  • For magnesium oxide (\(Mg^{2+}\) and \(O^{2 -}\)): The charges are \(+2\) and \(-2\), so the formula is \(MgO\) (1:1 ratio).
  • For aluminum chloride (\(Al^{3+}\) and \(Cl^{-}\)): To balance \(+3\) and \(-1\) charges, we need 3 \(Cl^{-}\) ions for 1 \(Al^{3+}\) ion. So the formula is \(AlCl_{3}\).
  • For sodium nitrate (\(Na^{+}\) and \(NO_{3}^{-}\)): Charges are \(+1\) and \(-1\), formula is \(NaNO_{3}\).
  • For calcium carbonate (\(Ca^{2+}\) and \(CO_{3}^{2-}\)): Charges \(+2\) and \(-2\), formula \(CaCO_{3}\).
  • For lithium sulfate (\(Li^{+}\) and \(SO_{4}^{2-}\)): To balance \(+1\) and \(-2\), 2 \(Li^{+}\) ions are needed. Formula \(Li_{2}SO_{4}\).
  • For beryllium phosphide (\(Be^{2+}\) and \(P^{3-}\)): Using the cross - multiply method (charges as sub - scripts), we get \(Be_{3}P_{2}\) (\(2\times3 = 3\times2\) to balance charges).
  • For magnesium hydroxide (\(Mg^{2+}\) and \(OH^{-}\)): 2 \(OH^{-}\) ions are needed for 1 \(Mg^{2+}\) ion. Formula \(Mg(OH)_{2}\).
  • For cobalt (II) nitride (\(Co^{2+}\) and \(N^{3-}\)): Cross - multiply charges (\(2\) and \(3\)), formula \(Co_{3}N_{2}\).
  • For chromium (II) fluoride (\(Cr^{2+}\) and \(F^{-}\)): 2 \(F^{-}\) ions for 1 \(Cr^{2+}\) ion. Formula \(CrF_{2}\).
  • For sodium phosphate (\(Na^{+}\) and \(PO_{4}^{3-}\)): 3 \(Na^{+}\) ions for 1 \(PO_{4}^{3-}\) ion. Formula \(Na_{3}PO_{4}\).
  • For aluminum carbonate (\(Al^{3+}\) and \(CO_{3}^{2-}\)): Cross - multiply charges (\(3\) and \(2\)), formula \(Al_{2}(CO_{3})_{3}\).

Answer:

  1. \(KI\)
  2. \(MgO\)
  3. \(AlCl_{3}\)
  4. \(NaNO_{3}\)
  5. \(CaCO_{3}\)
  6. \(Li_{2}SO_{4}\)
  7. \(Be_{3}P_{2}\)
  8. \(Mg(OH)_{2}\)
  9. \(Co_{3}N_{2}\)
  10. \(CrF_{2}\)
  11. \(Na_{3}PO_{4}\)
  12. \(Al_{2}(CO_{3})_{3}\)