Fill in any missing charges for the compound below. (All lone pairs and H atoms are :ö: H H-C C-N=N: H i:

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Exercise:**

1) Fill in any missing charges for the compound below. (All lone pairs and H atoms are shown.)

![Molecular Structure](molecular-structure.png)

**Description:**

The image contains a molecular structure with various atoms and bonds. The structure consists of the following:

- An oxygen atom (O) with two lone pairs.
- A hydrogen atom (H) bonded to a carbon atom (C).
- A carbon-fluorine (C-F) bond, with the fluorine (F) atom having three lone pairs.
- A carbon-carbon double bond (C=C).
- A linear carbon-nitrogen triple bond (C≡N), ending in a nitrogen atom (N) with a lone pair.
- Two additional hydrogen atoms bonded to carbon atoms.

**Instructions:**

Identify and assign any missing formal charges on the atoms within the molecule. Consider the valence electrons and the typical bonding patterns for each atom type when determining the charges.
Transcribed Image Text:**Exercise:** 1) Fill in any missing charges for the compound below. (All lone pairs and H atoms are shown.) ![Molecular Structure](molecular-structure.png) **Description:** The image contains a molecular structure with various atoms and bonds. The structure consists of the following: - An oxygen atom (O) with two lone pairs. - A hydrogen atom (H) bonded to a carbon atom (C). - A carbon-fluorine (C-F) bond, with the fluorine (F) atom having three lone pairs. - A carbon-carbon double bond (C=C). - A linear carbon-nitrogen triple bond (C≡N), ending in a nitrogen atom (N) with a lone pair. - Two additional hydrogen atoms bonded to carbon atoms. **Instructions:** Identify and assign any missing formal charges on the atoms within the molecule. Consider the valence electrons and the typical bonding patterns for each atom type when determining the charges.
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