29.4
The presence of a charge produces an electric field. If the charge moves, it also creates a magnetic field.
If the positive charge moves with a constant velocity, the electric field and the magnetic field at any point are directly proportional to the charge magnitude and inversely proportional to the square of the distance between the source and the field point.
However, unlike the electric field, the direction of the magnetic field is perpendicular to the plane containing the unit vector along the line joining the point P, and the charge velocity.
For the moving charge, the magnetic field at point P is also proportional to the cross product of its velocity and the unit vector.
Adding the proportionality constant as the permeability of free space, the final expression for the magnetic field is obtained.
The expression states that the field is maximum in the plane perpendicular to the charge velocity.
Conventionally, if the thumb gives the velocity direction, then the curled fingers show the magnetic field direction. For a negative charge, the field direction reverses.
静止した電荷は電場を生成して相互作用しますが、移動する電荷は磁場を生成します。
一定の速度で移動する点電荷を考えてみましょう。 電界と同様に、任意の点の磁界は電荷の大きさに正比例し、発生点と磁界点の間の距離の二乗に反比例します。 ただし、電場とは異なり、磁場は常に、発生源と場の点を結ぶ線を含む平面に…
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