Question:

A series RLC circuit has \(L=0.5\,\text{H}\), \(C=0.02\,\text{F}\). For critical damping, the required resistance \(R\) is

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For a series RLC circuit, \[ \boxed{ R_c=2\sqrt{\frac{L}{C}} } \] where \(R_c\) is the critical damping resistance.
Updated On: Jul 14, 2026
  • \(5\,\Omega\)
  • \(10\,\Omega\)
  • \(20\,\Omega\)
  • \(40\,\Omega\)
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The Correct Option is B

Solution and Explanation

Step 1: Use the condition for critical damping. For a series RLC circuit, \[ R_c=2\sqrt{\frac{L}{C}}. \] Given, \[ L=0.5\,\text{H},\qquad C=0.02\,\text{F}. \]

Step 2:
Calculate the critical resistance. \[ R_c = 2\sqrt{\frac{0.5}{0.02}} = 2\sqrt{25} = 2\times5 = 10\,\Omega. \] Hence, \[ \boxed{10\,\Omega} \] Therefore, \[ \boxed{(B)} \] is the correct answer.
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