1
GATE EE 2017 Set 1
MCQ (Single Correct Answer)
+2
-0.6
The output expression for the Karnaugh map shown below is GATE EE 2017 Set 1 Digital Electronics - Minimization Question 1 English
A
$$B\overline D + BCD$$
B
$$B\overline D + AB$$
C
$$\overline B D + ABC$$
D
$$B\overline D + ABC$$
2
GATE EE 2017 Set 1
Numerical
+1
-0
The equivalent resistance between the terminals A and B is ______ Ω.

GATE EE 2017 Set 1 Electric Circuits - Network Elements Question 55 English
Your input ____
3
GATE EE 2017 Set 1
Numerical
+2
-0
In the circuit shown below, the maximum power transferred to the resistor R is _______ W. GATE EE 2017 Set 1 Electric Circuits - Network Theorems Question 26 English
Your input ____
4
GATE EE 2017 Set 1
MCQ (Single Correct Answer)
+2
-0.6
Two passive two-port networks are connected in cascade as shown in figure. A voltage source is connected at port 1. GATE EE 2017 Set 1 Electric Circuits - Two Port Networks Question 15 English $$\begin{array}{l}Given:\\V_1=A_1V_2+B_1I_2\\I_1=C_1V_2+D_1I_2\\V_2=A_2V_3+B_2I_3\\I_2=C_2V_3+D_2I_3\end{array}$$

$$A_1,\;B_1,\;C_1,\;D_1,\;A_2,\;B_2,\;C_2,\;and\;D_2$$ are the generalized circuit constants. If the Thevenin equivalent circuit at port 3 consists of a voltage source VT and impedance ZT connected in series, then

A
$$V_T=\frac{V_1}{A_1A_2},\;Z_T=\frac{A_1B_2+B_1D_2}{A_1A_2+B_1C_2}$$
B
$$V_T=\frac{V_1}{A_1A_2+B_1C_2},\;Z_T=\frac{A_1B_2+B_1D_2}{A_1A_2}$$
C
$$V_T=\frac{V_1}{A_1+A_2},\;Z_T=\frac{A_1B_2+B_1D_2}{A_1+A_2}$$
D
$$V_T=\frac{V_1}{A_1A_2+B_1C_2},\;Z_T=\frac{A_1B_2+B_1D_2}{A_1A_2+B_1C_2}$$
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