22.16
When a permanent dipole, like a water molecule, is placed in an external electric field, the torque orients it along the field.
Its potential energy change is given by the negative work done to rotate it, which is an integral of the torque and differential angle's dot product. By choosing the potential energy to be zero at the perpendicular orientation, the potential energy at any angle is obtained. It is the negative dot product of its dipole moment and the field, which can be plotted.
Not all molecules are permanent dipoles. In a carbon dioxide molecule, the negative charge center coincides with the positive charge center, resulting in zero dipole moment.
In the presence of an external electric field, the positive charge is repelled away from the field while the negative charge is pulled toward it, resulting in a net dipole moment.
The charge separation induces an electric field. In its vicinity, it is opposite to the external field, while at large distances, it reinforces it.
The net electric field is the vector sum of the two fields.
永久電気双極子は、外部電場に沿って向きを変えます。 この回転は、外部トルクが回転に作用するため、位置エネルギーを定義することで定量化できます。 そして、位置エネルギーは平行配置で最小となり、逆平行配置で最大になります。 前者は安定した平衡ですが、後者は不安定な平衡です。
位置エネルギーの絶対値は物理…
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