サインイン

An important distinction exists between the electric field induced by a changing magnetic field and the electrostatic field produced by a fixed charge distribution. Specifically, the induced electric field is nonconservative because it does not work in moving a charge over a closed path. In contrast, the electrostatic field is conservative and does no net work over a closed path. Hence, electric potential can be associated with the electrostatic field but not the induced field. The following equations represent the distinction between the two types of electric fields:

Equation1

Equation2

When the magnetic flux through a circuit changes, a nonconservative electric field is induced, which drives current through the circuit. However, when there is no conducting path in free space, it can be treated as if a conducting path were present; that is, nonconservative electric fields are induced wherever the magnetic flux through a circuit changes, whether or not a conducting path is present.

タグ
Induced Electric FieldsChanging Magnetic FieldElectrostatic FieldConservative FieldNonconservative Electric FieldMagnetic FluxCircuit CurrentElectric PotentialCharge DistributionClosed Path

章から 30:

article

Now Playing

30.7 : Induced Electric Fields: Applications

電磁誘導

1.4K 閲覧数

article

30.1 : 誘導

電磁誘導

3.7K 閲覧数

article

30.2 : ファラデーの法則

電磁誘導

3.6K 閲覧数

article

30.3 : レンツの法則

電磁誘導

3.3K 閲覧数

article

30.4 : モーションエムフ

電磁誘導

3.0K 閲覧数

article

30.5 : ファラデーディスクダイナモ

電磁誘導

1.9K 閲覧数

article

30.6 : 誘導電界

電磁誘導

3.4K 閲覧数

article

30.8 : 渦電流

電磁誘導

1.4K 閲覧数

article

30.9 : 変位電流

電磁誘導

2.7K 閲覧数

article

30.10 : 変位電流の重要性

電磁誘導

4.2K 閲覧数

article

30.11 : 電磁界

電磁誘導

2.0K 閲覧数

article

30.12 : マクスウェルの電磁気学の方程式

電磁誘導

2.9K 閲覧数

article

30.13 : マクスウェル方程式の対称性

電磁誘導

3.1K 閲覧数

article

30.14 : アンペア・マクスウェルの法則:問題解決

電磁誘導

433 閲覧数

article

30.15 : マクスウェル方程式の微分形式

電磁誘導

338 閲覧数

See More

JoVE Logo

個人情報保護方針

利用規約

一般データ保護規則

研究

教育

JoVEについて

Copyright © 2023 MyJoVE Corporation. All rights reserved