1
GATE ECE 2016 Set 1
MCQ (Single Correct Answer)
+1
-0.3
The output of the combinational circuit given below is GATE ECE 2016 Set 1 Digital Circuits - Logic Gates Question 19 English
A
A+B+C
B
A(B+C)
C
B(C+A)
D
C(A+B)
2
GATE ECE 2016 Set 1
MCQ (Single Correct Answer)
+2
-0.6
Identify the circuit below. GATE ECE 2016 Set 1 Digital Circuits - Combinational Circuits Question 22 English
A
Binary to Gray code converter
B
Binary to XS3 converter
C
Gray to Binary converter
D
XS3 to Binary converter
3
GATE ECE 2016 Set 1
MCQ (Single Correct Answer)
+2
-0.6
The functionality implemented by the circuit below is GATE ECE 2016 Set 1 Digital Circuits - Combinational Circuits Question 21 English
A
2-to-1 multiplexer
B
4-to-1 multiplexer
C
7-to-1 multiplexer
D
6-to-1 multiplexer
4
GATE ECE 2016 Set 1
MCQ (Single Correct Answer)
+2
-0.6
The electric field of a uniform plane wave travelling along the negative $$z$$ direction is given by the following equation: $$$\overrightarrow E {}_w^i = \left( {{{\widehat a}_{_x}} + j{{\widehat a}_{_y}}} \right){E_0}{e^{jkz}}$$$

This wave is incident upon a receiving antenna placed at the origin and whose radiated electric field towards the incident wave is given by the following equation:

$$${\overrightarrow E _{_a}} = \left( {{{\widehat a}_{_x}} + 2{{\widehat a}_{_y}}} \right){E_1}{1 \over r}{e^{ - jkr}}$$$

The polarization of the incident wave, the polarization of the antenna and losses due to the polarization mismatch are, respectively,

A
Linear, Circular (clockwise), $$−5dB$$
B
Circular (clockwise), Linear, $$−5dB$$
C
Circular (clockwise), Linear, $$−3dB$$
D
Circular (anti clockwise), Linear, $$−3dB$$
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