Difficulty: Easy
Correct Answer: is increased
Explanation:
Introduction / Context:
Inductors oppose changes in current via inductive reactance X_L, which depends on frequency. Understanding how current varies with frequency for a fixed applied voltage is essential in filter design, AC analysis, and impedance matching.
Given Data / Assumptions:
Concept / Approach:
Inductive reactance: X_L = 2 * π * f * L. Current magnitude with fixed voltage is I = V / X_L. Thus, as frequency f decreases, X_L decreases linearly, so current increases correspondingly. This inverse relationship holds for ideal inductors without series resistance considered.
Step-by-Step Solution:
Verification / Alternative check:
Numerical example: Let V = 10 V, L = 10 mH. At 1 kHz: X_L ≈ 62.8 Ω → I ≈ 159 mA. At 100 Hz: X_L ≈ 6.28 Ω → I ≈ 1.59 A, showing the increase clearly (ideal case).
Why Other Options Are Wrong:
Common Pitfalls:
Final Answer:
is increased
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