1.

In the circuit given below, the value of V in terms of VS and IS using Superposition Theorem is ___________

A. V = \(\frac{2}{7} I_S – \frac{4}{7} V_S\)
B. V = \(\frac{2}{7} V_S + \frac{4}{7} I_S\)
C. V = \(\frac{2}{7} V_S – \frac{4}{7} I_S\)
D. V = \(\frac{2}{7} I_S – \frac{4}{7} V_S\)
Answer» D.


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