1
GATE ECE 2003
MCQ (Single Correct Answer)
+1
-0.3
With out any additional circuitry, an 8:1 MUX can be used to obtain
A
some but not all Boolean functions of 3 variables
B
all function of 3 variables but none of 4 variables
C
all functions of 3 variables and some but not all of 4 variables
D
all functions of 4 variablesand some but not all of 4 variables
2
GATE ECE 2003
MCQ (Single Correct Answer)
+2
-0.6
The circuit shown in figure has 4 boxes each described by inputs P, Q, R and outputs Y, Z with
Y = $$\,P \oplus \,Q\, \oplus \,R$$
z= $$RQ + \overline P R\, + Q\,\overline P $$ GATE ECE 2003 Digital Circuits - Combinational Circuits Question 33 English The circuit acts as a
A
4 bit adder giving P + Q
B
4 bit subtractor-giving P - Q
C
4 bit subtractor-giving Q - P
D
4 bit adder giving P + Q + R
3
GATE ECE 2003
MCQ (Single Correct Answer)
+2
-0.6
The circuit shown in figure converts GATE ECE 2003 Digital Circuits - Combinational Circuits Question 34 English
A
BCD to binary code
B
Binary to excess – 3 code
C
Excess – 3 to Gray code
D
Gray to Binary code.
4
GATE ECE 2003
MCQ (Single Correct Answer)
+2
-0.6
If the functions W, X, Y and Z are as follows

W= R+$$\overline P Q + \overline R $$ S
X = $$X = PQ\overline R \,\overline S + \overline P \,\overline Q \,\overline R \,\overline S + P\overline Q \,\overline R \,\overline S $$
Y = $$RS + \overline {OR + P\overline Q + \overline {PQ} } $$
Z = $$R + S + \overline {PQ + \overline {PQR} + P\overline {QS} } $$


A
W=Z, X=$$\overline Z $$
B
W=$$\overline Z $$, X=Y
C
W=Z, X=Y
D
W=Y= $$\overline Z $$
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