Chapter 13: Problem 82
What types of intermolecular forces exist in a crystal of ice? How do these forces differ from the types of intermolecular forces that exist in a crystal of solid oxygen?
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Chapter 13: Problem 82
What types of intermolecular forces exist in a crystal of ice? How do these forces differ from the types of intermolecular forces that exist in a crystal of solid oxygen?
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The following data have been collected for substance X. Construct a heating curve for substance X. (The drawing does not need to be absolutely to scale, but it should clearly show relative differences.) normal melting point molar heat of fusion normal boiling point molar heat of vaporization \(-15^{\circ} \mathrm{C}\) \(2.5 \mathrm{kJ} / \mathrm{mol}\) \(134^{\circ} \mathrm{C}\) \(55.3 \mathrm{kJ} / \mathrm{mol}\)
The heats of fusion of three substances are listed below. Explain the trend this list reflects. $$\begin{array}{ll} \mathrm{HI} & 2.87 \mathrm{kJ} / \mathrm{mol} \\ \mathrm{HBr} & 2.41 \mathrm{kJ} / \mathrm{mol} \\ \mathrm{HCl} & 1.99 \mathrm{kJ} / \mathrm{mol} \end{array}$$
What is meant by hydrogen bonding? Give three examples of substances that would be expected to exhibit hydrogen bonding in the liquid state.
Although water and ammonia differ in molar mass by only one unit, the boiling point of water is over \(100^{\circ} \mathrm{C}\) higher than that of ammonia. What forces in liquid water that do not exist in liquid ammonia could account for this observation?
The boiling points of the noble gas elements are listed below. Comment on the trend in the boiling points. Why do the boiling points vary in this manner? $$\begin{aligned} &\begin{array}{llll} \mathrm{He} & -272^{\circ} \mathrm{C} & \mathrm{Kr} & -152.3^{\circ} \mathrm{C} \end{array}\\\ &\begin{array}{llll} \text { Ne } & -245.9^{\circ} \mathrm{C} & \text { Xe }-107.1^{\circ} \mathrm{C} \end{array}\\\ &\begin{array}{llll} \mathrm{Ar} & -185.7^{\circ} \mathrm{C} & \mathrm{Rn} & -61.8^{\circ} \mathrm{C} \end{array} \end{aligned}$$
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