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Question 68 of 91

Q.Write the special features of Magnetic Lorentz force.

Tamil Nadu DgeTamil Nadu HSC (DGE) Board 2019Subjective· 3mImportance★★★★★
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The magnetic Lorentz force F⃗=qv⃗×B⃗\vec F=q\vec v\times\vec B has several special features that distinguish it sharply from the electric force: it depends on the charge's velocity, always acts perpendicular to that velocity, and therefore never does work on the charge.

When a charge qq moves with velocity v⃗\vec v through a magnetic field B⃗\vec B, it experiences a magnetic Lorentz force F⃗=q(v⃗×B⃗)\vec F = q(\vec v \times \vec B), of magnitude F=qvBsin⁡θF = qvB\sin\theta, where θ\theta is the angle between v⃗\vec v and B⃗\vec B. Its special features are:

  1. It exists only for a moving charge. Unlike the electric force qE⃗q\vec E, which acts on a charge whether it is at rest or moving, the magnetic force is velocity-dependent: it is zero if the charge is at rest (v=0v=0).

  2. It is perpendicular to both v⃗\vec v and B⃗\vec B. By the property of the cross product, F⃗\vec F always points in a direction normal to the plane containing v⃗\vec v and B⃗\vec B, given by the right-hand rule.

  3. It does no work on the charge. Since F⃗\vec F is always perpendicular to v⃗\vec v (and hence to the displacement), the work done dW=F⃗⋅ds⃗=0dW = \vec F\cdot d\vec s = 0 at every instant. The magnetic force can therefore change only the direction of motion of the charge, never its speed or kinetic energy.

  4. It vanishes when v⃗\vec v is parallel or antiparallel to B⃗\vec B (θ=0°\theta = 0° or 180°180°, since sin⁡θ=0\sin\theta = 0), and it is maximum when v⃗\vec v is perpendicular to B⃗\vec B (θ=90°\theta=90°), giving Fmax=qvBF_{max}=qvB — this is the condition under which a charged particle moves in a circular path in a uniform magnetic field.

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