Chapter 11: Problem 113
Why is the molecular structure of \(\mathrm{H}_{2} \mathrm{O}\) nonlinear, whereas that of \(\mathrm{BeF}_{2}\) is linear, even though both molecules consist of three atoms?
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Chapter 11: Problem 113
Why is the molecular structure of \(\mathrm{H}_{2} \mathrm{O}\) nonlinear, whereas that of \(\mathrm{BeF}_{2}\) is linear, even though both molecules consist of three atoms?
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How many electrons are involved when two atoms in a molecule are connected by a "double bond"? Write the Lewis structure of a molecule containing a double bond.
For each of the following bonds, draw a figure indicating the direction of the bond dipole, including which end of the bond is positive and which is negative. a. \(\mathrm{N}-\mathrm{Cl}\) b. \(\mathrm{N}-\mathrm{P}\) c. \(\mathrm{N}-\mathrm{S}\) d. \(\mathrm{N}-\mathrm{C}\)
What is the geometric structure of the ammonia molecule? How many pairs of electrons surround the nitrogen atom in \(\mathrm{NH}_{3} ?\) What is the approximate \(\mathrm{H}-\mathrm{N}-\mathrm{H}\) bond angle in ammonia?
Explain how the atoms in covalent molecules achieve configurations similar to those of the noble gases. How does this differ from the situation in ionic compounds?
On the basis of their electron configurations, predict the formula of the simple binary ionic compound likely to form when the following pairs of elements react with each other. a. sodium, \(\mathrm{Na}\), and selenium, Se b. rubidium, Rb, and fluorine, F c. potassium, \(\mathrm{K}\), and tellurium, Te d. barium, Ba, and selenium, Se e. potassium, \(\mathrm{K}\), and astatine, \(\mathrm{At}\) f. francium, Fr, and chlorine, \(\mathrm{Cl}\)
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