How many o and a bonds are in this molecule? H. C-C H-C C-H C=C H number of o bonds: number of z bonds:

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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**Quiz: Identifying Sigma (σ) and Pi (π) Bonds**

**Question:**
How many σ and π bonds are in this molecule?

**Molecular Structure:**
The diagram provided is a hexagonal ring structure, similar to a benzene ring. It contains alternating single and double bonds between carbon (C) atoms. Each carbon atom is also bonded to one hydrogen (H) atom.

- The molecule has six carbon (C) atoms forming a cyclic structure.
- Each carbon atom is bonded to one hydrogen (H) atom.
- There are alternating single and double bonds between the carbon atoms.

**Response Fields:**

- Number of σ bonds: [__________]
- Number of π bonds: [__________] 

**Explanation of Bonds:**

In a benzene-like ring:
- Each C-H bond is a σ bond.
- Each C-C single bond is a σ bond.
- Each C=C double bond consists of one σ bond and one π bond. 

By counting the bonds:
- Total number of σ bonds = number of C-H σ bonds + number of C-C σ bonds.
- Total number of π bonds = number of C=C π bonds. 

Enter the calculated number of σ and π bonds in the provided response fields.
Transcribed Image Text:**Quiz: Identifying Sigma (σ) and Pi (π) Bonds** **Question:** How many σ and π bonds are in this molecule? **Molecular Structure:** The diagram provided is a hexagonal ring structure, similar to a benzene ring. It contains alternating single and double bonds between carbon (C) atoms. Each carbon atom is also bonded to one hydrogen (H) atom. - The molecule has six carbon (C) atoms forming a cyclic structure. - Each carbon atom is bonded to one hydrogen (H) atom. - There are alternating single and double bonds between the carbon atoms. **Response Fields:** - Number of σ bonds: [__________] - Number of π bonds: [__________] **Explanation of Bonds:** In a benzene-like ring: - Each C-H bond is a σ bond. - Each C-C single bond is a σ bond. - Each C=C double bond consists of one σ bond and one π bond. By counting the bonds: - Total number of σ bonds = number of C-H σ bonds + number of C-C σ bonds. - Total number of π bonds = number of C=C π bonds. Enter the calculated number of σ and π bonds in the provided response fields.
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