49) Which statement about the compounds CH3C1, CH3SH, CH3OH, and CF4 are true? A) CH3CI has a higher boiling point than CF4 because dipole-dipole forces hold the CH3C1 molecules together. B) CF4 has a higher boiling point than CH3C1 because stronger dispersion forces hold the CF4 molecules together. C) CH3SH has a higher boiling point than CH3OH because stronger hydrogen bonds hold the CH3SH molecules together. D) CH3OH has a higher boiling point than CH3SH because stronger London forces hold the CH3OH molecules together E) CF4 has a higher boiling point than CH3SH because the C-F bonds in CF4 are more polar than the C-S bonds in CH3SH

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Having a hard time figuring out boiling points with intermolecular forces. Why is the correct answer A?

49) Which statement about the compounds CH3C1, CH3SH, CH3OH, and CF4 are true?
A) CH3C1 has a higher boiling point than CF4 because dipole-dipole forces hold the
CH3C1 molecules together.
B) CF4 has a higher boiling point than CH3C1 because stronger dispersion forces
hold the CF4 molecules together.
C) CH3SH has a higher boiling point than CH3OH because stronger hydrogen bonds
hold the CH3SH molecules together.
D) CH3OH has a higher boiling point than CH3SH because stronger London forces
hold the CH3OH molecules together
E) CF4 has a higher boiling point than CH3SH because the C-F bonds in CF4 are
more polar than the C-S bonds in CH3SH
Transcribed Image Text:49) Which statement about the compounds CH3C1, CH3SH, CH3OH, and CF4 are true? A) CH3C1 has a higher boiling point than CF4 because dipole-dipole forces hold the CH3C1 molecules together. B) CF4 has a higher boiling point than CH3C1 because stronger dispersion forces hold the CF4 molecules together. C) CH3SH has a higher boiling point than CH3OH because stronger hydrogen bonds hold the CH3SH molecules together. D) CH3OH has a higher boiling point than CH3SH because stronger London forces hold the CH3OH molecules together E) CF4 has a higher boiling point than CH3SH because the C-F bonds in CF4 are more polar than the C-S bonds in CH3SH
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