A sample CH₄ has only London forces while a sample CH₃F has both London forces and dipole-dipole forces. Why is this the case? A) That's not true! Both of these have only London forces! B) That's not true! These have hydrogen so they also have hydrogen bonding! C) CH₃F has dipole-dipole attractions because the C-F bond is polar. D) CH₃F has dipole-dipole attractions because the C-F bond is polar AND the molecule is not symmetric so the polarity of the bonds doesn't cancel.

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A sample CH₄ has only London forces while a sample CH₃F has both London forces and dipole-dipole forces. Why is this the case?
A) That's not true! Both of these have only London forces!
B) That's not true! These have hydrogen so they also have hydrogen bonding!
C) CH₃F has dipole-dipole attractions because the C-F bond is polar.
D) CH₃F has dipole-dipole attractions because the C-F bond is polar AND the molecule is not symmetric so the polarity of the bonds doesn't cancel.
 
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