JoVE Logo

Accedi

22.15 : Electric Dipoles and Dipole Moment

Consider two charges of equal magnitude but opposite signs. If they cannot be separated by an external electric field, the system is called a permanent dipole. For example, the water molecule is a dipole, making it a good solvent.

Theoretically, studying electric dipoles leads to understanding why the resultant electric forces around us are weak. Since electric forces are strong, remnant net charges are rare. Hence, the interaction between dipoles helps us understand electrical interactions in ordinary objects around us.

When a permanent dipole is placed in a uniform electric field, it experiences no net force. However, it orients itself along the field so that the positive charge end points toward it. This interaction between the dipole and the electric field can be scrutinized by calculating the net torque it experiences.

Simple vector algebra leads to an interesting observation. The net torque depends on a cross-product of a new vector, called the electric dipole moment, and the electric field. The dipole moment is proportional to the magnitude of each charge and the separation between them.

If a molecule has a large separation between its positive and negative charge centers, it has a higher dipole moment. If the charge separated is itself high, its dipole moment is larger.

The dipole moment points from the negative charge to the positive charge. In the absence of any other torque, the dipole rotates and aligns with the field. The observation implies that the potential energy is associated with the orientation of the dipole with respect to the external electric field.

Tags

Electric DipoleDipole MomentPermanent DipoleElectric FieldNet TorqueCharge SeparationElectrical InteractionsVector AlgebraPositive ChargeNegative ChargePotential EnergySolvent Properties

Dal capitolo 22:

article

Now Playing

22.15 : Electric Dipoles and Dipole Moment

Electric Charges and Fields

5.0K Visualizzazioni

article

22.1 : Cariche elettriche

Electric Charges and Fields

18.1K Visualizzazioni

article

22.2 : Fonti e proprietà della carica elettrica

Electric Charges and Fields

9.8K Visualizzazioni

article

22.3 : Conduttori e isolanti

Electric Charges and Fields

8.3K Visualizzazioni

article

22.4 : Conduttori di carica per induzione

Electric Charges and Fields

7.5K Visualizzazioni

article

22.5 : Legge di Coulomb

Electric Charges and Fields

8.8K Visualizzazioni

article

22.6 : La legge di Coulomb e il principio di sovrapposizione

Electric Charges and Fields

8.6K Visualizzazioni

article

22.7 : Confronto tra forze elettriche e gravitazionali

Electric Charges and Fields

2.5K Visualizzazioni

article

22.8 : Campo elettrico

Electric Charges and Fields

10.4K Visualizzazioni

article

22.9 : Campo elettrico di due cariche uguali e opposte

Electric Charges and Fields

5.7K Visualizzazioni

article

22.10 : Distribuzioni di carica continua

Electric Charges and Fields

6.8K Visualizzazioni

article

22.11 : Campo elettrico di una carica in linea continua

Electric Charges and Fields

1.5K Visualizzazioni

article

22.12 : Campo elettrico di un disco carico

Electric Charges and Fields

2.0K Visualizzazioni

article

22.13 : Linee di campo elettrico

Electric Charges and Fields

7.3K Visualizzazioni

article

22.14 : Proprietà delle linee di campo elettrico

Electric Charges and Fields

7.5K Visualizzazioni

See More

JoVE Logo

Riservatezza

Condizioni di utilizzo

Politiche

Ricerca

Didattica

CHI SIAMO

Copyright © 2025 MyJoVE Corporation. Tutti i diritti riservati