For each pair of compounds listed, check the box next to the one with the higher boiling point. higher boiling point compounds CH,CH, CHA Ne Хе Si H10 Si,H6

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Chapter1: Chemical Foundations
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**Title: Determining Higher Boiling Points Among Compound Pairs**

**Instructions:**
For each pair of compounds listed, check the box next to the one with the higher boiling point.

**Table:**

| Compounds | Higher Boiling Point |
|-----------|----------------------|
| CH₃CH₃    | ⭕                   |
| CH₄       |                      |
| Ne        |                      |
| Xe        |                      |
| Si₄H₁₀    |                      |
| Si₂H₆     |                      |

**Explanation:**

- **Row 1:** Ethane (CH₃CH₃) is indicated as having a higher boiling point than methane (CH₄).
- **Row 2:** The boxes for neon (Ne) and xenon (Xe) have not been checked yet, indicating a comparison needs to be made.
- **Row 3:** Similarly, the boxes for tetra-silane (Si₄H₁₀) and disilane (Si₂H₆) remain unchecked.

Use this guide to learn about boiling point comparisons based on molecular structure and intermolecular forces.
Transcribed Image Text:**Title: Determining Higher Boiling Points Among Compound Pairs** **Instructions:** For each pair of compounds listed, check the box next to the one with the higher boiling point. **Table:** | Compounds | Higher Boiling Point | |-----------|----------------------| | CH₃CH₃ | ⭕ | | CH₄ | | | Ne | | | Xe | | | Si₄H₁₀ | | | Si₂H₆ | | **Explanation:** - **Row 1:** Ethane (CH₃CH₃) is indicated as having a higher boiling point than methane (CH₄). - **Row 2:** The boxes for neon (Ne) and xenon (Xe) have not been checked yet, indicating a comparison needs to be made. - **Row 3:** Similarly, the boxes for tetra-silane (Si₄H₁₀) and disilane (Si₂H₆) remain unchecked. Use this guide to learn about boiling point comparisons based on molecular structure and intermolecular forces.
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