Q.Write Lewis dot symbols for atoms of the following elements: Mg, Na, B, O, N, Br.
Lewis dot symbols place valence electrons as dots around the element symbol, showing only the outermost shell electrons that participate in bonding. For the six elements: Mg has 2 dots, Na has 1, B has 3, O has 6, N has 5, and Br has 7.
The Lewis dot structure (or electron-dot symbol) is a notation invented by Gilbert N. Lewis to represent the valence electrons of an atom—those electrons in the outermost shell that determine chemical behavior. The element symbol represents the nucleus plus all inner electrons (the "core"), while dots around it show only the valence electrons.
Why does this matter? Chemical bonding involves valence electrons. Atoms form bonds by sharing, gaining, or losing these outer electrons to achieve stable configurations. The Lewis symbol gives us an instant visual of how many electrons an atom can offer for bonding.
The convention is straightforward: write the element symbol, then place dots around it (top, right, bottom, left) to represent valence electrons. When there are more than four electrons, start pairing them up.
Let me work through each element by identifying its valence electron count from its position in the periodic table.
1. Magnesium (Mg)
Magnesium is in Group 2, so it has 2 valence electrons. Its electronic configuration is —the two electrons in the subshell are the valence electrons.
or more symmetrically:
2. Sodium (Na)
Sodium is in Group 1, giving it 1 valence electron. Configuration: .
3. Boron (B)
Boron is in Group 13, so it has 3 valence electrons. Configuration: .
or arranged around the symbol:
4. Oxygen (O)
Oxygen is in Group 16, so it has 6 valence electrons. Configuration: .
Following the convention of placing one electron on each side first, then pairing:
or written horizontally: with two pairs and two singles.
5. Nitrogen (N)
Nitrogen is in Group 15, so it has 5 valence electrons. Configuration: .
One pair and three unpaired electrons.
6. Bromine (Br)
Bromine is in Group 17 (the halogens), so it has 7 valence electrons. Configuration ends in .
Three pairs and one unpaired electron.
The number of valence electrons equals the group number for main-group elements: Group 1 → 1 electron, Group 2 → 2 electrons, Groups 13–18 → subtract 10 (so Group 15 → 5 electrons, Group 17 → 7 electrons).
Do not confuse the total number of electrons with valence electrons. Only the outermost shell counts. For example, oxygen has 8 total electrons but only 6 valence electrons.
The Lewis dot symbols are: (2 dots), (1 dot), (3 dots), (6 dots), (5 dots), and (7 dots).
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