Chapter 13: Problem 43
Ionic solids are generally considerably harder than most molecular solids. Explain.
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Chapter 13: Problem 43
Ionic solids are generally considerably harder than most molecular solids. Explain.
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Discuss some implications of the fact that, unlike most substances, water expands in volume when it freezes.
Discuss the types of intermolecular forces acting in the liquid state of each of the following substances. a. \(\mathrm{Kr}\) b. \(\mathrm{S}_{8}\) c. \(\mathrm{NF}_{3}\) d. \(\mathrm{H}_{2} \mathrm{O}\)
Discuss the types of intermolecular forces acting in the liquid state of each of the following substances. a. \(\mathrm{N}_{2}\) b. \(\mathrm{NH}_{3}\) c. He d. \(\mathrm{CO}_{2}\) (linear, nonpolar)
Although methane, \(\mathrm{CH}_{4}\), and ammonia, \(\mathrm{NH}_{3}\), differ in molar mass by only one unit, the boiling point of ammonia is over \(100^{\circ} \mathrm{C}\) higher than that of methane (a nonpolar molecule). Explain.
In carbon compounds a given group of atoms can often be arranged in more than one way. This means that more than one structure may be possible for the same atoms. For example, both the molecules diethyl ether and 1 -butanol have the same number of each type of atom, but they have different structures and are said to be isomers of one another. $$\begin{aligned} &\text { diethyl ether } \quad \mathrm{CH}_{3}-\mathrm{CH}_{2}-\mathrm{O}-\mathrm{CH}_{2}-\mathrm{CH}_{3}\\\ &\text { 1-butanol } \quad \mathrm{CH}_{3}-\mathrm{CH}_{2}-\mathrm{CH}_{2}-\mathrm{CH}_{2}-\mathrm{OH} \end{aligned}$$ Which substance would you expect to have the larger vapor pressure? Why?
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