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(Solved): with steps show why 3. The Nodal equation at the supernode in the following circuit is: (a) \( \frac ...



with steps show why

3. The Nodal equation at the supernode in the following circuit is:
(a) \( \frac{v_{2}-v_{1}}{1}+\frac{v_{2}}{j 2}+\frac{v_{2
3. The Nodal equation at the supernode in the following circuit is: (a) \( \frac{v_{2}-v_{1}}{1}+\frac{v_{2}}{j 2}+\frac{v_{2}-v_{3}}{4-j 4}=0 \) (b) \( \frac{v_{3}}{-j 4}+\frac{v_{2}}{j 2}=j 2 \) (c) \( \frac{v_{2}-v_{1}}{1}+\frac{v_{2}}{j 2}+\frac{v_{2}-v_{3}}{4 \angle 0}=\mathrm{C} \) (d) \( \frac{v_{2}}{j 2}+\frac{v_{3}}{4-j 4}=j 2 \) (e) \( \frac{v_{2}}{j 2}+\frac{v_{3}}{4-j 4}+j 2=0 \)


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