Chapter 20: Problem 63
Sulfur forms a wide variety of compounds in which it has \(+6\), \(+4,+2,0\), and \(-2\) oxidation states. Give examples of sulfur compounds having each of these oxidation states.
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Chapter 20: Problem 63
Sulfur forms a wide variety of compounds in which it has \(+6\), \(+4,+2,0\), and \(-2\) oxidation states. Give examples of sulfur compounds having each of these oxidation states.
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List two major industrial uses of hydrogen.
Elemental boron is produced by reduction of boron oxide with magnesium to give boron and magnesium oxide. Write a balanced equation for this reaction.
Lead forms compounds in the \(+2\) and \(+4\) oxidation states. All lead(II) halides are known (and are known to be ionic). Only \(\mathrm{PbF}_{4}\) and \(\mathrm{PbCl}_{4}\) are known among the possible lead(IV) halides. Presumably lead(IV) oxidizes bromide and iodide ions, producing the lead(II) halide and the free halogen: Suppose \(25.00 \mathrm{~g}\) of a lead(IV) halide reacts to form \(16.12 \mathrm{~g}\) of a lead(II) halide and the free halogen. Identify the halogen.
Write equations describing the reactions of Sn with each of the following: \(\mathrm{Cl}_{2}, \mathrm{O}_{2}\), and \(\mathrm{HCl}\).
Describe the bonding in \(\mathrm{SO}_{2}\) and \(\mathrm{SO}_{3}\) using the localized electron model (hybrid orbital theory). How would the molecular orbital model describe the \(\pi\) bonding in these two compounds?
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