Question:

For the given circuit, in the steady state, $\left| V _{ B ^{-}}- V _{ D }\right|=$___$V$
Electric Circuit

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In the steady state, capacitors behave like open circuits, so the voltage across the capacitor remains constant.
Updated On: Mar 20, 2025
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Correct Answer: 1

Approach Solution - 1

In steady state, capacitor behaves as an open circuit. Circuit is:
capacitor in an open circuit
\(⇒ i_{AB}=\frac{6}{3}=2A\ \&\ i_{AD}=\frac{6}{12}=0.5A  \)
\(⇒\) VB + 2 × 2 - 10 × 0.5 = VD
\(⇒\) VB + VD = 1 volt
So, the correct answer is 1.

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Approach Solution -2

In the steady state, the capacitor in the circuit behaves like an open circuit because the voltage across the capacitor cannot change instantaneously. 
Therefore, the circuit simplifies as follows:

  • The current only flows through the resistors in series and parallel.
  • Apply Kirchhoff's Voltage Law (KVL) and Ohm's Law to find the voltage difference between points \( B \) and \( D \).

After solving the circuit, the voltage difference is found to be 1 V.

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Alternating Current

The current electricity that is bidirectional and keeps changing the direction of the charge flow is known as alternating current. The bi-directionality is caused by a sinusoidally varying current and voltage that reverses directions, creating a periodic back-and-forth motion for the current. The electrical outlets at our homes and industries are supplied with alternating current.