QUESTION IMAGE
Question
- for the table below, specify the dominant intermolecular force involved for each substance in the space immediately following the substance. then in the last column, indicate which member of the pair you would expect to have the higher boiling point.
substance #1 substance #2 dominant intermolecular force substance with higher boiling point
a. hcl(g) i₂ london - dispersion forces
b. ch₃f ch₃oh
c. h₂o h₂s
d. sio₂ so₂
e. fe kr
f. ch₃oh cuo
g. nh₃ ch₄
h. hcl(g) nacl
i. sic cu
Step1: Identify intermolecular forces
- HCl(g): Dipole - dipole forces as it is a polar molecule.
- CH₃F: Dipole - dipole forces due to its polarity.
- H₂O: Hydrogen bonding (strongest among common intermolecular forces for small molecules), also dipole - dipole and London dispersion forces.
- SiO₂: Covalent network solid, held together by strong covalent bonds.
- Fe: Metallic solid, held by metallic bonds.
- CH₃OH: Hydrogen bonding, dipole - dipole and London dispersion forces.
- NH₃: Hydrogen bonding, dipole - dipole and London dispersion forces.
- HCl(g): Dipole - dipole forces.
- SiC: Covalent network solid, held by strong covalent bonds.
- I₂: London dispersion forces as it is a non - polar molecule.
- CH₃OH: Hydrogen bonding, dipole - dipole and London dispersion forces.
- H₂S: Dipole - dipole forces due to polarity.
- SO₂: Dipole - dipole forces as it is polar.
- Kr: London dispersion forces as it is a noble gas (non - polar).
- CuO: Ionic solid, held by ionic bonds.
- CH₄: London dispersion forces as it is non - polar.
- NaCl: Ionic solid, held by ionic bonds.
- Cu: Metallic solid, held by metallic bonds.
Step2: Compare boiling points based on intermolecular forces
- Covalent network solids (SiO₂, SiC) have very high boiling points due to the strength of covalent bonds.
- Ionic solids (CuO, NaCl) have high boiling points due to strong ionic bonds.
- Metallic solids (Fe, Cu) have relatively high boiling points due to metallic bonding.
- Among molecular substances, those with hydrogen bonding (H₂O, CH₃OH, NH₃) have higher boiling points than those with only dipole - dipole (HCl, CH₃F, H₂S, SO₂) and London dispersion forces (I₂, CH₄, Kr).
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| Substance #1 | Dominant Intermolecular Force | Substance #2 | Dominant Intermolecular Force | Substance with Higher Boiling Point |
|---|---|---|---|---|
| CH₃F | Dipole - dipole | CH₃OH | Hydrogen bonding | CH₃OH |
| H₂O | Hydrogen bonding | H₂S | Dipole - dipole | H₂O |
| SiO₂ | Covalent bonds | SO₂ | Dipole - dipole | SiO₂ |
| Fe | Metallic bonds | Kr | London dispersion | Fe |
| CH₃OH | Hydrogen bonding | CuO | Ionic bonds | CuO |
| NH₃ | Hydrogen bonding | CH₄ | London dispersion | NH₃ |
| HCl(g) | Dipole - dipole | NaCl | Ionic bonds | NaCl |
| SiC | Covalent bonds | Cu | Metallic bonds | SiC |