Select the appropriate options to identify which compound in the following pair has the lower freezing point and identify the strongest intermolecular forces for that compound: CH3CH₂CH₂OH (n-propanol) or CH3CH₂CH3 (propane) has the lower freezing point. The strongest intermolecular forces of the compound with the lower freezing point are 1. CH3CH₂CH₂OH (n-propanol) 2. CH3CH₂CH3 (propane) 3. ion-dipole forces 4. hydrogen-bonding forces 5. dipole-dipole forces 6. ion-induced dipole forces 7. dipole-induced dipole forces 8. dispersion forces

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Select the appropriate options to identify which compound in the following pair has
the lower freezing point and identify the strongest intermolecular forces for that
compound:
CH3CH₂CH₂OH (n-propanol) or CH3CH₂CH3 (propane)
has the lower
freezing point.
The strongest
intermolecular forces of the
compound with the lower
freezing point are
1. CH3CH₂CH₂OH (n-propanol)
2. CH3CH₂CH3 (propane)
3. ion-dipole forces
4. hydrogen-bonding forces
5. dipole-dipole forces
6. ion-induced dipole forces
7. dipole-induced dipole forces
8. dispersion forces
Transcribed Image Text:Select the appropriate options to identify which compound in the following pair has the lower freezing point and identify the strongest intermolecular forces for that compound: CH3CH₂CH₂OH (n-propanol) or CH3CH₂CH3 (propane) has the lower freezing point. The strongest intermolecular forces of the compound with the lower freezing point are 1. CH3CH₂CH₂OH (n-propanol) 2. CH3CH₂CH3 (propane) 3. ion-dipole forces 4. hydrogen-bonding forces 5. dipole-dipole forces 6. ion-induced dipole forces 7. dipole-induced dipole forces 8. dispersion forces
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