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In the circuit of the figure is the equivalent impedance seen across terminals $\text{a, b}$ is

  1. $\left(\frac{16}{3}\right) \Omega$
  2. $\left(\frac{8}{3}\right) \Omega$
  3. $\left(\frac{8}{3}+12 j\right) \Omega$
  4. None of the above
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