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Engineering Electromagnetics Fundamentals Flashcards

7 cards from real BEE practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Engineering Electromagnetics Fundamentals flashcards as text
  1. The magnetization M of a magnetic material is related to the magnetic susceptibility χ_m and H by:

    Answer: M = χ_m H

    By definition, M = χ_m H, where χ_m is dimensionless and positive for paramagnetic materials.

  2. In the method of images, a point charge +Q placed at height h above an infinite grounded conducting plane is equivalent to:

    Answer: -Q at height -h (below the plane)

    The image charge is -Q placed at distance h on the opposite side of the grounded plane to enforce V = 0 on the surface.

  3. Ampere's law with Maxwell's displacement current correction in integral form is:

    Answer: ∮H·dl = I_enc + ∬(∂D/∂t)·dS

    Maxwell added the displacement current ∂D/∂t to Ampere's law: ∮H·dl = I_enc + ∬(∂D/∂t)·dS.

  4. The critical angle for total internal reflection when light passes from glass (n=1.5) to air (n=1.0) is approximately:

    Answer: 41.8°

    θ_c = arcsin(1.0/1.5) = arcsin(0.667) ≈ 41.8°, the minimum angle for total internal reflection.

  5. The torque T experienced by a magnetic dipole m in a uniform magnetic field B is:

    Answer: T = m × B

    The torque is T = m × B, tending to align the magnetic moment with the applied field.

  6. The power dissipated per unit volume in a conducting medium with conductivity σ and electric field E is:

    Answer: P = σE²

    Ohmic power loss per unit volume is P = J·E = σE·E = σE², known as Joule heating.

  7. Which parameter determines the ratio of conduction current to displacement current in a material at angular frequency ω?

    Answer: Loss tangent tan δ = σ/(ωε)

    The loss tangent tan δ = σ/(ωε) = J_c/J_d is the ratio of conduction to displacement current density magnitude.