If \( V_{A} \) and \( V_{B} \) denote the potentials of \( A \) and \( B \), then the equivalent...
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If \( V_{A} \) and \( V_{B} \) denote the potentials of \( A \) and \( B \), then the equivalent resistance between \( A \) and \( B \) in the adjoint electric circuit is
(a) \( 10 \Omega \) if \( V_{A}V_{B} \)
(b) \( 5 \Omega \) if \( V_{A}V_{B} \)
(c) \( 5 \Omega \) if \( V_{A}V_{B} \)
(d) \( 20 \Omega \) if \( V_{A}V_{B} \)
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