In the following resonance formula for ozone, O3, what is the formal charge of the central oxygen atom?   Select one: a. 0 b. +1 c. -2 d. -1 e. +2

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Chapter1: Chemical Foundations
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In the following resonance formula for ozone, O3, what is the formal charge of the central oxygen atom?

 

Select one:
a. 0
b. +1
c. -2
d. -1
e. +2
The image depicts the Lewis structure of the ozone (O₃) molecule. Here's a detailed explanation:

1. **Central Atom**:
   - The central atom is an oxygen atom connected by single and double bonds to the two other oxygen atoms.

2. **Bonding**:
   - One double bond connects the central oxygen to one of the outer oxygens.
   - One single bond connects the central oxygen to the other outer oxygen.
   
3. **Lone Pairs**:
   - Each outer oxygen atom has six electrons represented as three pairs of dots (lone pairs).
   - The central oxygen atom has four electrons represented as two pairs of dots.

4. **Molecule Shape**:
   - The overall shape of the ozone molecule is bent or V-shaped due to the lone pairs and bond angles (approximately 117 degrees).

The structure illustrates the concept of resonance in chemistry, showing the ability of the molecule to be represented in different forms with the shifting of double bonds.
Transcribed Image Text:The image depicts the Lewis structure of the ozone (O₃) molecule. Here's a detailed explanation: 1. **Central Atom**: - The central atom is an oxygen atom connected by single and double bonds to the two other oxygen atoms. 2. **Bonding**: - One double bond connects the central oxygen to one of the outer oxygens. - One single bond connects the central oxygen to the other outer oxygen. 3. **Lone Pairs**: - Each outer oxygen atom has six electrons represented as three pairs of dots (lone pairs). - The central oxygen atom has four electrons represented as two pairs of dots. 4. **Molecule Shape**: - The overall shape of the ozone molecule is bent or V-shaped due to the lone pairs and bond angles (approximately 117 degrees). The structure illustrates the concept of resonance in chemistry, showing the ability of the molecule to be represented in different forms with the shifting of double bonds.
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