The unit cells for lithium oxide and silver iodide are shown below (Figure 1). Show that the ratio of cations to anions in the unit cell of Li,0 corresponds to the ratio of cations to anions in the formula of the compound. Match the numbers in the left column to the appropriate blanks in the sentences on the right. Reset Help The Li atoms occupy position(s) inside the unit cell, giving Li atom(s)/unit cel. Figure < 1of1 4 The O atoms occupy corner position(s) and face-center 5. position(s) of the unit cell, giving 6 O atom(s)/unit cell. The ratio of Li:0 atoms is 8. which reduces to 10

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Part A
The unit cells for lithium oxide and silver iodide are
shown below (Figure 1).
Show that the ratio of cations to anions in the unit cell of Li,0 corresponds to the ratio of cations to anions in the formula of
the compound.
Match the numbers in the left column to the appropriate blanks in the sentences on the right.
Reset Help
1
The Li atoms occupy
position(s) inside the unit cell, giving
2
Li atom(s)/unit cell.
3
Figure
< 1 of 1
The O atoms occupy
corner
4
position(s) and
face-center
5.
position(s) of the unit cell, giving
O atom(s)/unit cell.
The ratio of Li :0 atoms is
8
which reduces to
10
Transcribed Image Text:Part A The unit cells for lithium oxide and silver iodide are shown below (Figure 1). Show that the ratio of cations to anions in the unit cell of Li,0 corresponds to the ratio of cations to anions in the formula of the compound. Match the numbers in the left column to the appropriate blanks in the sentences on the right. Reset Help 1 The Li atoms occupy position(s) inside the unit cell, giving 2 Li atom(s)/unit cell. 3 Figure < 1 of 1 The O atoms occupy corner 4 position(s) and face-center 5. position(s) of the unit cell, giving O atom(s)/unit cell. The ratio of Li :0 atoms is 8 which reduces to 10
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