Question of 55
Q.A straight conductor of length L and cross-sectional area A, carrying a current I along the positive Y-axis direction, is placed in a magnetic field B⃗ directed along the positive Z-axis.
(a) What magnitude of force will the conductor experience?
(b) Determine the direction of this force.
(c) Which rule did you use to determine this direction? (1+1+1)
OR
The self-inductance of coil-1, L1, is three times the self-inductance of coil-2, L2. If, at a certain instant, the rate of increase of current and the rate of dissipation of energy are equal in both coils, find, at that instant, the ratio between the two coils of —
(a) the induced EMF,
(b) the induced current, and
(c) the stored energy. (1+1+1)
Tripura TbseHigher Secondary (+2 Stage) Examination 2026Subjective· 3mImportance★★★★★
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Start your 14-day free trial to unlock the full solution →Since the current (along +Y) is perpendicular to B (along +Z), the force has its maximum magnitude BIL, and its direction — found from L⃗ × B⃗ — is along +X.
- Magnitude: The force on a current-carrying conductor in a magnetic field is Here the current direction (+Y) and B (+Z) are perpendicular, so θ = 90° and sinθ = 1, giving
- Direction: Using the right-handed coordinate system (X̂ × Ŷ = Ẑ, Ŷ × Ẑ = X̂, Ẑ × X̂ = Ŷ): So the force acts along the positive X-direction. …
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