In the molecules below, areas that have a partial negative charge are pink and areas that have a partial positive charge are blue. The attractive force between these two molecules has most likely been produced by covalent bonds. dipole-dipole interactions. dipole-induced dipole interactions. London dispersion forces.

In the molecules below areas that have a partial negative charge are pink and areas that have a partial positive charge are blue The attractive force between th class=

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Answer:

Dipole-dipole interactions

Step-by-step explanation:

Each molecule consists of two different elements.

Thus, each molecule has permanent bond dipoles.

The dipoles do not cancel, so the attractive forces are dipole-dipole attractions.

"Covalent bonds" is wrong, because there are no bonds between the two molecules.

There are dipole-induced dipole and London dispersion forces, but they are much weaker than the dipole-dipole attractions.

The attractive force between these two molecules has most likely been produced by  Dipole-dipole interactions

The following information should be considered:

  • Each and every molecule comprise of two different elements.
  • So, each molecule has permanent bond dipoles.
  • The dipoles does not cancel, due to which the attractive forces are dipole-dipole attractions.

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