로그인

Consider a region consisting of several individual conductors with a definite charge density in the region between these conductors. The second uniqueness theorem states that if the total charge on each conductor and the charge density in the in-between region are known, then the electric field can be uniquely determined.

In contrast, consider that the electric field is non-unique and apply Gauss's law in divergence form in the region between the conductors and the integral form to the surface enclosing each conductor. When integrated over the outermost boundary, the charge includes the total charge on all the conductors and the charge density in the in-between region.

If a third field is defined as the difference between the two fields, then the divergence of the third field and the integral form of the third field are zero. The product rule is used to obtain the expression for the divergence of the third field and its associated potential. The potential can be written in terms of the field, and applying that the divergence of the third field is zero gives the square of the magnitude of the electric field.

Equation1

Equation2

Equation3

Equation4

This expression is integrated over the region's volume, and the divergence theorem is applied to rewrite the volume integral as a surface integral. Recalling that the surface integral of the third field is zero implies that the magnitude of the third field is zero everywhere. This shows that the first two fields are equal, proving the solution's uniqueness.

Tags
Second Uniqueness TheoremElectric FieldCharge DensityConductorsGauss s LawDivergence FormIntegral FormSurface IntegralDivergence TheoremPotentialUniqueness Proof

장에서 24:

article

Now Playing

24.15 : Second Uniqueness Theorem

Electric Potential

915 Views

article

24.1 : 전기 위치 에너지

Electric Potential

5.2K Views

article

24.2 : 균일한 전기장에서의 전기 위치 에너지

Electric Potential

4.3K Views

article

24.3 : 2점 전하의 전위 에너지

Electric Potential

4.2K Views

article

24.4 : 전위와 전위차

Electric Potential

4.1K Views

article

24.5 : 전기장에서 전위 찾기

Electric Potential

3.8K Views

article

24.6 : 전위 계산 I

Electric Potential

1.8K Views

article

24.7 : 전위 계산 II

Electric Potential

1.5K Views

article

24.8 : 등전위 표면(Equipotential Surfaces)과 필드 라인(Field Lines)

Electric Potential

3.5K Views

article

24.9 : 등전위 표면 및 도체

Electric Potential

3.2K Views

article

24.10 : 전위에서 전기장 결정

Electric Potential

4.3K Views

article

24.11 : 푸아송과 라플라스 방정식

Electric Potential

2.4K Views

article

24.12 : Van de Graaff 발전기

Electric Potential

1.6K Views

article

24.13 : 전하 분포와 관련된 에너지

Electric Potential

1.4K Views

article

24.14 : 정전기 경계 조건

Electric Potential

355 Views

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유