Which bonds allow for a large, bonded network to be more directional and why? 1. Sigma bonds 2. Pi bonds Because 1. The orbitals overlap side-to-side to hold the bond in place. 2. The orbitals overlap end-to-end in several different directions. 3. Multiple of these bonds result in delocalized electrons. O 2,1 O2,2 O 1.3 O 1,2 O 2,3 O 1,1

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Chapter1: Chemical Foundations
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## Quiz on Chemical Bonding

### Question 1:
**Which bonds allow for a large, bonded network to be more directional and why?**

1. **Sigma bonds**
2. **Pi bonds**

**Because:**

1. The orbitals overlap side-to-side to hold the bond in place.
2. The orbitals overlap end-to-end in several different directions.
3. Multiple of these bonds result in delocalized electrons.

Please select the correct combination:

- \( \circ \) 2,1
- \( \circ \) 2,2
- \( \circ \) 1,3
- \( \circ \) 1,2
- \( \circ \) 2,3
- \( \circ \) 1,1

### Explanation of Answers:
1. If the bonds described in the first statement (Sigma bonds) create more directional networks, consider how these bonds align and form.
2. For Pi bonds, understand their nature and impact on the overall molecular structure.
3. Delocalized electrons contribute to the stability and orientation of the bonds.
Transcribed Image Text:## Quiz on Chemical Bonding ### Question 1: **Which bonds allow for a large, bonded network to be more directional and why?** 1. **Sigma bonds** 2. **Pi bonds** **Because:** 1. The orbitals overlap side-to-side to hold the bond in place. 2. The orbitals overlap end-to-end in several different directions. 3. Multiple of these bonds result in delocalized electrons. Please select the correct combination: - \( \circ \) 2,1 - \( \circ \) 2,2 - \( \circ \) 1,3 - \( \circ \) 1,2 - \( \circ \) 2,3 - \( \circ \) 1,1 ### Explanation of Answers: 1. If the bonds described in the first statement (Sigma bonds) create more directional networks, consider how these bonds align and form. 2. For Pi bonds, understand their nature and impact on the overall molecular structure. 3. Delocalized electrons contribute to the stability and orientation of the bonds.
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