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Q.In case of an electron moving along a helical path what determines the pitch of motion?

Assam AhsecAHSEC Higher Secondary (HS) Final Examination 2025Subjective· 1mImportance★★★★★
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Pitch = (velocity component along B) × (time period of one revolution).

When a charged particle (electron) enters a magnetic field B⃗ with velocity at an angle to B, its velocity can be resolved into two components: v⊥ (perpendicular to B, responsible for the circular motion) and v∥ (parallel to B, unaffected by the magnetic force since the force qv×B is zero along B).

The perpendicular component v⊥ makes the electron move in a circle of radius r = mv⊥/(qB), with time period T = 2πm/(qB) — this period is independent of speed, depending only on q, m, and B.

Meanwhile the parallel component v∥ is unaffected by the field and carries the electron steadily along the direction of B, so in one revolution (time T) the electron advances a distance called the pitch:

p = v∥ · T = v∥ · (2πm/qB)

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