Question #14. Relative Boiling Points. For each of the pair of substances in the table below, identify the most important type of "intermolecular" force for each substance in the pair, and then tell which substance in the pair would have the higher boiling point. Pair of Most Important Forces for Most Important Forces for Substance with Substances First Substance Second Substance Higher Boiling Point Cl4 and [ Select ] [ Select ] [ Select ] MnCl4 HF and v [ Select ] London dispersion forces Hydrogen bonding Dipole-dipole forces lon-dipole forces [ Select ] [ Select ] HCI Br2 and [ Select ] [ Select ] ICI lon-ion forces C4H10 [ Select ] [ Select ] and C8H18
Question #14. Relative Boiling Points. For each of the pair of substances in the table below, identify the most important type of "intermolecular" force for each substance in the pair, and then tell which substance in the pair would have the higher boiling point. Pair of Most Important Forces for Most Important Forces for Substance with Substances First Substance Second Substance Higher Boiling Point Cl4 and [ Select ] [ Select ] [ Select ] MnCl4 HF and v [ Select ] London dispersion forces Hydrogen bonding Dipole-dipole forces lon-dipole forces [ Select ] [ Select ] HCI Br2 and [ Select ] [ Select ] ICI lon-ion forces C4H10 [ Select ] [ Select ] and C8H18
Chemistry
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Chapter1: Chemical Foundations
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![**Question #14. Relative Boiling Points.**
For each of the pair of substances in the table below, identify the most important type of "intermolecular" force for each substance in the pair, and then tell which substance in the pair would have the higher boiling point.
| Pair of Substances | Most Important Forces for First Substance | Most Important Forces for Second Substance | Substance with Higher Boiling Point |
|---------------------|-------------------------------------------|--------------------------------------------|-------------------------------------|
| CCl₄ and MnCl₄ | [ Select ] | [ Select ] | [ Select ] |
| HF and HCl | [ Select ] | [ Select ] | [ Select ] |
| Br₂ and ICl | [ Select ] | [ Select ] | [ Select ] |
| C₄H₁₀ and C₈H₁₈ | [ Select ] | [ Select ] | [ Select ] |
**Options for Selection:**
- London dispersion forces
- Hydrogen bonding
- Dipole-dipole forces
- Ion-dipole forces
- Ion-ion forces
Each pair of substances requires the identification of their respective intermolecular forces, such as London dispersion forces, hydrogen bonding, and others. The task is to determine which substance in each pair would likely have a higher boiling point based on these forces.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbc3283a1-4525-4f83-85f5-1370b48b93ff%2F2121c337-4bc5-4217-bdea-96d76e758ba4%2Fnjrphxq_processed.png&w=3840&q=75)
Transcribed Image Text:**Question #14. Relative Boiling Points.**
For each of the pair of substances in the table below, identify the most important type of "intermolecular" force for each substance in the pair, and then tell which substance in the pair would have the higher boiling point.
| Pair of Substances | Most Important Forces for First Substance | Most Important Forces for Second Substance | Substance with Higher Boiling Point |
|---------------------|-------------------------------------------|--------------------------------------------|-------------------------------------|
| CCl₄ and MnCl₄ | [ Select ] | [ Select ] | [ Select ] |
| HF and HCl | [ Select ] | [ Select ] | [ Select ] |
| Br₂ and ICl | [ Select ] | [ Select ] | [ Select ] |
| C₄H₁₀ and C₈H₁₈ | [ Select ] | [ Select ] | [ Select ] |
**Options for Selection:**
- London dispersion forces
- Hydrogen bonding
- Dipole-dipole forces
- Ion-dipole forces
- Ion-ion forces
Each pair of substances requires the identification of their respective intermolecular forces, such as London dispersion forces, hydrogen bonding, and others. The task is to determine which substance in each pair would likely have a higher boiling point based on these forces.
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