JoVE Logo

Sign In

24.11 : Poisson's And Laplace's Equation

The electric potential of the system can be calculated by relating it to the electric charge densities that give rise to the electric potential. The differential form of Gauss's law expresses the electric field's divergence in terms of the electric charge density.

Static equilibrium: Maxwell's equation; math symbol for electric field divergence equation.

On the other hand, the electric field is expressed as the gradient of the electric potential.

Electric field equation, E=-∇V, vector field representation, physics formula.

Combining the above two equations, an electric potential is expressed in terms of the electric charge density.

Electrostatics equation, Laplace's equation in vector calculus, potential flow diagram.

This equation is called Poisson's equation. When the electric charge density is zero, that is, there is no charge present in the given volume, then the above equation can be reduced to Laplace's equation.

Laplace's equation, -∇²V=0, formula; static equilibrium, potential theory.

The divergence of the gradient of a function, which is a mathematical operation, is called the Laplacian. Depending upon the symmetry of the system, the Laplacian operator in different symmetries can be used. For example, the Laplacian in spherical polar coordinates can be used for a charge distribution with spherical symmetry.

The potential is a scalar quantity, and, thus, calculating the potential from electric charge densities is easier. Additionally, once the potential of the system is known, then the corresponding electric fields can be estimated by using the gradient of the potential.

Tags

Poisson s EquationLaplace s EquationElectric PotentialElectric Charge DensityElectric FieldGauss s LawDivergenceGradientLaplacian OperatorSpherical CoordinatesScalar QuantityCharge Distribution

From Chapter 24:

article

Now Playing

24.11 : Poisson's And Laplace's Equation

Electric Potential

2.6K Views

article

24.1 : الطاقة الكامنة الكهربائية

Electric Potential

5.7K Views

article

24.2 : الطاقة الكامنة الكهربائية في مجال كهربائي موحد

Electric Potential

4.5K Views

article

24.3 : الطاقة الكامنة الكهربائية لشحنتين من نقطتين

Electric Potential

4.4K Views

article

24.4 : الجهد الكهربائي وفرق الجهد

Electric Potential

4.3K Views

article

24.5 : إيجاد الجهد الكهربائي من المجال الكهربائي

Electric Potential

4.0K Views

article

24.6 : حسابات الجهد الكهربائي I

Electric Potential

1.9K Views

article

24.7 : حسابات الجهد الكهربائي II

Electric Potential

1.6K Views

article

24.8 : الأسطح متساوية الجهد وخطوط المجال

Electric Potential

3.6K Views

article

24.9 : الأسطح والموصلات متساوية الجهد

Electric Potential

3.3K Views

article

24.10 : تحديد المجال الكهربائي من الجهد الكهربائي

Electric Potential

4.3K Views

article

24.12 : مولد فان دي جراف

Electric Potential

1.7K Views

article

24.13 : الطاقة المرتبطة بتوزيع الشحنة

Electric Potential

1.5K Views

article

24.14 : شروط الحدود الكهروستاتيكية

Electric Potential

404 Views

article

24.15 : نظرية التفرد الثانية

Electric Potential

967 Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved