1
GATE CSE 1997
MCQ (Single Correct Answer)
+2
-0.6
Given $$\sqrt {\left( {224} \right),} = {\left( {13} \right)_r},$$
The value of the radix' $$r$$ is:
A
$$10$$
B
$$8$$
C
$$5$$
D
$$6$$
2
GATE CSE 1997
MCQ (Single Correct Answer)
+1
-0.3
Let $$^ * $$ be defined as $${x^ * }y = \overline x + y,$$ Let $$z = {x^ * }y.$$ Value of $${z^ * }x$$ is
A
$$\overline x + y$$
B
$$x$$
C
$$0$$
D
$$1$$
3
GATE CSE 1997
MCQ (Single Correct Answer)
+2
-0.6
Let $$f\left( {x,y,z} \right) = \overline x + \overline y x + xz$$ be a switching function. Which one of the following is valid?
A
$$\overline y x$$ is a prime implicates of $$f$$
B
$$xz$$ is a minters of $$f$$
C
$$xz$$ is an implicant of $$f$$
D
y is a prime applicant of $$f$$
4
GATE CSE 1997
MCQ (Single Correct Answer)
+2
-0.6
Consider the logic circuit shown in Figure below. The functions $${f_1},$$ $${f_2}$$ and $$f$$ (in canonical sum of products form in decimal notation) are: GATE CSE 1997 Digital Logic - Boolean Algebra Question 35 English

$${f_1}\left( {w,\,x,\,y,\,z} \right) = \sum {8,9,10} $$
$${f_2}\left( {w,\,x,\,y,\,z} \right) = \sum {7,8,12,13,18,15} $$
$$f\left( {w,\,x,\,y,\,z} \right) = \sum {\left( {8,9} \right)} $$

The function $${f_3}$$ is

A
$$\sum {9,\,10} $$
B
$$\sum 9 $$
C
$$\sum {1,8,9} $$
D
$$\sum {8,10,15} $$
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