Write the phasor impedance for resistor, inductor, and capacitor, and give X_L and X_C.

Study for the NEIEP Magnetism and Electromagnetism (355) exam. Enhance your understanding with multiple choice questions, each equipped with hints and explanations. Prepare effectively for high performance on your exam!

Multiple Choice

Write the phasor impedance for resistor, inductor, and capacitor, and give X_L and X_C.

Explanation:
In phasor form, each element has an impedance that combines a real part (resistance) and an imaginary part (reac­tance). For the basic components the standard forms are: - Resistor: Z_R = R (purely real) - Inductor: Z_L = j ω L (positive imaginary) - Capacitor: Z_C = 1/(j ω C) = -j/(ω C) (negative imaginary) The reactances, which are the magnitudes of the imaginary parts, are defined as X_L = ω L and X_C = 1/(ω C). The signs sit in the impedance expressions above, with the inductor contributing +jωL and the capacitor contributing -j/(ωC). The option that matches these relationships is the one listing Z_R = R, Z_L = j ω L, Z_C = -j/(ω C) and X_L = ω L, X_C = 1/(ω C). The other options misstate either the imaginary signs or the X_L / X_C magnitudes.

In phasor form, each element has an impedance that combines a real part (resistance) and an imaginary part (reac­tance). For the basic components the standard forms are:

  • Resistor: Z_R = R (purely real)
  • Inductor: Z_L = j ω L (positive imaginary)

  • Capacitor: Z_C = 1/(j ω C) = -j/(ω C) (negative imaginary)

The reactances, which are the magnitudes of the imaginary parts, are defined as X_L = ω L and X_C = 1/(ω C). The signs sit in the impedance expressions above, with the inductor contributing +jωL and the capacitor contributing -j/(ωC).

The option that matches these relationships is the one listing Z_R = R, Z_L = j ω L, Z_C = -j/(ω C) and X_L = ω L, X_C = 1/(ω C). The other options misstate either the imaginary signs or the X_L / X_C magnitudes.

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