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The inductor is placed in the L section filter because_________
  • a)
    It offers zero resistance to DC component
  • b)
    It offers infinite resistance to DC component
  • c)
    It bypasses the DC component
  • d)
    It bypasses the AC component
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
The inductor is placed in the L section filter because_________a)It of...
The inductor offers high reactance to ac component and zero resistance to dc component. So, it blocks the ac component which cannot be bypassed by the capacitors.
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Most Upvoted Answer
The inductor is placed in the L section filter because_________a)It of...

Explanation:

Inductors are commonly used in L-section filters to block or offer zero resistance to the DC component of a signal. This is because inductors have the property of opposing changes in current, which means they offer high impedance to DC signals.

Reasoning:
- Zero resistance to DC component: Inductors have the property of offering zero resistance to DC signals, allowing them to pass through without any significant impedance.
- Infinite resistance to DC component: While it is not technically infinite, inductors offer high impedance to DC signals due to their energy storage and opposition to changes in current.
- Bypassing the DC component: By offering zero resistance to DC signals, inductors effectively bypass the DC component in the circuit.
- Bypassing the AC component: While inductors do offer impedance to AC signals, their primary function in an L-section filter is to block or offer zero resistance to the DC component.

In conclusion, the inductor is placed in the L-section filter because it offers zero resistance to the DC component of the signal, allowing it to pass through without significant impedance.
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The inductor is placed in the L section filter because_________a)It offers zero resistance to DC componentb)It offers infinite resistance to DC componentc)It bypasses the DC componentd)It bypasses the AC componentCorrect answer is option 'A'. Can you explain this answer?
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