We are given that \( A \) is an orthogonal matrix. By definition, a matrix \( A \) is orthogonal if:
\[ A^T A = A A^T = I \]
Where \( I \) is the identity matrix. The inverse of an orthogonal matrix is also orthogonal. Specifically, for an orthogonal matrix \( A \), we have:
\[ A^{-1} = A^T \]
This means the inverse of an orthogonal matrix is also orthogonal, as its transpose is its inverse.
Thus, the correct answer is option (C), Orthogonal.
The supply voltage magnitude \( |V| \) of the circuit shown below is ____ .
A two-port network is defined by the relation
\(\text{I}_1 = 5V_1 + 3V_2 \)
\(\text{I}_2 = 2V_1 - 7V_2 \)
The value of \( Z_{12} \) is: