A skeletal structure for for bromate (BrO3) is shown below. Starting from this structure, complete the Lewis structure that follows the octet rule on all atoms. :O: 11 Br 0= Click to edit molecule 0:

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**Bromate Ion Skeletal Structure and Lewis Structure Completion**

The bromate ion (BrO₃⁻) is depicted in the image with a skeletal structure. This structure serves as the basis for constructing a Lewis structure that adheres to the octet rule for all atoms involved.

### Structure Description:
- The central atom is bromine (Br).
- Three oxygen (O) atoms are bonded to the bromine atom.
- Two of the oxygen atoms are double bonded to bromine, each with two lone pairs of electrons.
- The third oxygen atom is single bonded to bromine and has three lone pairs of electrons.
- The negative charge is indicated on the ion.

### Instructions for Completion:
To complete the Lewis structure:
1. Ensure each atom satisfies the octet rule (eight electrons around each atom except hydrogen).
2. Adjust the placement of electrons or bonds as needed to accurately represent the molecule's electronic structure.

This structure provides a foundation for understanding the electronic configuration and interactions within the bromate ion.
Transcribed Image Text:**Bromate Ion Skeletal Structure and Lewis Structure Completion** The bromate ion (BrO₃⁻) is depicted in the image with a skeletal structure. This structure serves as the basis for constructing a Lewis structure that adheres to the octet rule for all atoms involved. ### Structure Description: - The central atom is bromine (Br). - Three oxygen (O) atoms are bonded to the bromine atom. - Two of the oxygen atoms are double bonded to bromine, each with two lone pairs of electrons. - The third oxygen atom is single bonded to bromine and has three lone pairs of electrons. - The negative charge is indicated on the ion. ### Instructions for Completion: To complete the Lewis structure: 1. Ensure each atom satisfies the octet rule (eight electrons around each atom except hydrogen). 2. Adjust the placement of electrons or bonds as needed to accurately represent the molecule's electronic structure. This structure provides a foundation for understanding the electronic configuration and interactions within the bromate ion.
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