Moving Charges and Magnetism
Kerala Board · Class 12 · Physics
Flashcards for Moving Charges and Magnetism — Kerala Board Class 12 Physics. Quick Q&A cards covering key concepts, definitions, and formulas.
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See them allWhat is the Lorentz force? Write its mathematical expression and explain each term.
Answer
The Lorentz force is the total force experienced by a charged particle in the presence of both electric and magnetic fields. F = q(E + v × B) Where: - F = Total force on the charge - q = Charge of t…
State three key characteristics of magnetic force on a moving charged particle.
Answer
1. **Velocity dependence**: Force exists only when the charge is moving (|v| ≠ 0) 2. **Perpendicular direction**: Magnetic force is always perpendicular to both velocity (v) and magnetic field (B) 3…
What is the SI unit of magnetic field? Define it based on the force equation.
Answer
The SI unit of magnetic field is **Tesla (T)**. Definition: 1 Tesla is the magnetic field strength when a charge of 1 coulomb moving with velocity 1 m/s perpendicular to the field experiences a force…
Derive the expression for the force on a current-carrying conductor in a magnetic field.
Answer
For a straight conductor of length l carrying current I: Starting from microscopic level: - Number of charge carriers = nlA (n = number density, A = cross-section) - Each carrier has charge q and dri…
A charged particle moves in a uniform magnetic field. Describe its motion when v ⊥ B and when v has components both parallel and perpendicular to B.
Answer
**Case 1: v ⊥ B (velocity perpendicular to field)** - Particle follows a circular path - Magnetic force provides centripetal force - Radius: r = mv/(qB) - Frequency: ν = qB/(2πm) (cyclotron frequency)…
State the Biot-Savart Law and explain its significance.
Answer
**Biot-Savart Law**: The magnetic field dB due to a current element Idl at distance r is: **dB = (μ₀/4π) × (Idl × r)/r³** Where: - μ₀ = 4π × 10⁻⁷ Tm/A (permeability of free space) - dl = current ele…
Find the magnetic field at the center of a circular current loop of radius R carrying current I.
Answer
For a circular loop at the center (x = 0): Using Biot-Savart law: - Each element dl is perpendicular to r - All elements are at same distance R from center - All dB vectors point in same direction (p…
State Ampere's Circuital Law and explain when it can be applied easily.
Answer
**Ampere's Circuital Law**: ∮ B⃗ · dl⃗ = μ₀Iₑₙcₗₒₛₑd The line integral of magnetic field around any closed path equals μ₀ times the net current enclosed by that path. **Easy Application Conditions**…
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- Kerala Board of Public Examinations — keralapareekshabhavan.in
- National Education Policy 2020 — education.gov.in
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