Specify the number of unshared pairs of electrons necessary to complete the valence shell of the labeled atoms, a-c in the following structures. Specify "0" if no pair of electron needs to be added. Notice that formal charges are indicated by or + and that the atoms are NOT labeled in sequence. 1. 2. H H a НО. C H b N=C-O a b c H abc

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**Title: Determining Unshared Pairs of Electrons in Molecular Structures**

**Objective:**
Specify the number of unshared pairs of electrons necessary to complete the valence shell of the labeled atoms (a, b, c) in the following chemical structures. Specify "0" if no pair of electron needs to be added. Notice that formal charges are indicated by \( \oplus \) or \( \ominus \) and that the atoms are NOT labeled in sequence.

**Instructions:**
For each labeled atom (a, b, c) in the given molecular structures, use the dropdown menus to select the number of unshared pairs of electrons needed to complete their valence shell.

**Structures:**

1. The first molecular structure is as follows:
    - The molecule consists of a nitrogen atom bonded to a hydroxyl group (HO) and a carbon atom. This nitrogen is atom "a".
    - The first carbon atom, connected to nitrogen and three hydrogen atoms, is labeled as "c".
    - The second carbon atom, bonded to four hydrogen atoms, is indirectly connected to the nitrogen atom.
    
    ```
         a 
        HO - N
           / \
         H-C - C - H
          |   |
          H  H
    ```
    
    Use the dropdown menus to indicate the number of unshared pairs of electrons for atoms a, b, and c.

2. The second molecular structure is as follows:
    - The molecule consists of a cyano group (N≡C) triple-bonded to a carbon-oxygen double bond where the oxygen has a negative formal charge. The nitrogen is labeled as atom "a".
    - The carbon in the cyano group is labeled as "b".
    - The oxygen atom in the carbon-oxygen double bond is labeled as "c".
    
    ```
    a     b      c
    N ≡ C - O⁻
    ```

    Use the dropdown menus to indicate the number of unshared pairs of electrons for atoms a, b, and c.

**Dropdown Selections:**
- For each labeled atom (a, b, c), select the number of unshared pairs of electrons needed:
  - 0
  - 1
  - 2
  - 3

**Note:** Careful consideration of the valence electrons and the formal charges on each atom will assist in making the correct selections.
Transcribed Image Text:**Title: Determining Unshared Pairs of Electrons in Molecular Structures** **Objective:** Specify the number of unshared pairs of electrons necessary to complete the valence shell of the labeled atoms (a, b, c) in the following chemical structures. Specify "0" if no pair of electron needs to be added. Notice that formal charges are indicated by \( \oplus \) or \( \ominus \) and that the atoms are NOT labeled in sequence. **Instructions:** For each labeled atom (a, b, c) in the given molecular structures, use the dropdown menus to select the number of unshared pairs of electrons needed to complete their valence shell. **Structures:** 1. The first molecular structure is as follows: - The molecule consists of a nitrogen atom bonded to a hydroxyl group (HO) and a carbon atom. This nitrogen is atom "a". - The first carbon atom, connected to nitrogen and three hydrogen atoms, is labeled as "c". - The second carbon atom, bonded to four hydrogen atoms, is indirectly connected to the nitrogen atom. ``` a HO - N / \ H-C - C - H | | H H ``` Use the dropdown menus to indicate the number of unshared pairs of electrons for atoms a, b, and c. 2. The second molecular structure is as follows: - The molecule consists of a cyano group (N≡C) triple-bonded to a carbon-oxygen double bond where the oxygen has a negative formal charge. The nitrogen is labeled as atom "a". - The carbon in the cyano group is labeled as "b". - The oxygen atom in the carbon-oxygen double bond is labeled as "c". ``` a b c N ≡ C - O⁻ ``` Use the dropdown menus to indicate the number of unshared pairs of electrons for atoms a, b, and c. **Dropdown Selections:** - For each labeled atom (a, b, c), select the number of unshared pairs of electrons needed: - 0 - 1 - 2 - 3 **Note:** Careful consideration of the valence electrons and the formal charges on each atom will assist in making the correct selections.
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