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Q.Write the expression for the force on a charge of moving with velocity v⃗\vec{v} in a magnetic field B⃗\vec{B}. Under what circumstances the force shall be zero? OR What is the nature of magnetic field produced by a current flowing in a straight conductor? Name the rule to find the direction of magnetic field.

Nagaland NbseNagaland Board of School Education 2023Subjective· 2mImportance★★★★★
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The magnetic (Lorentz) force on a moving charge is F⃗=q(v⃗×B⃗)\vec F=q(\vec v\times\vec B); it vanishes whenever v⃗\vec v and B⃗\vec B are collinear.

The force on a charge qq moving with velocity v⃗\vec v in a magnetic field B⃗\vec B is given by:

F⃗=q(v⃗×B⃗)\vec F = q(\vec v \times \vec B)

whose magnitude is F=qvBsin⁡θF = qvB\sin\theta, where θ\theta is the angle between v⃗\vec v and B⃗\vec B, and whose direction is perpendicular to both v⃗\vec v and B⃗\vec B (given by the right-hand rule for a positive charge).

From F=qvBsin⁡θF = qvB\sin\theta, the force is zero when:

  • θ=0°\theta = 0° or θ=180°\theta = 180°, i.e. v⃗\vec v is parallel or antiparallel to B⃗\vec B (since sin⁡0°=sin⁡180°=0\sin0°=\sin180°=0), or
  • v=0v = 0 (charge at rest), or
  • B=0B = 0 (no field), or …

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