Q3. Using the same F(ABCD) function given in Q2 and assuming the don't care outputs as 0, obtain the SOP form minimal Boolean function using Quine-McCluskey method.

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Please Solve Only Q3

Q2. Assuming (xx +22),, =(abcdefg), , a Boolean function F(ABCD) is given by the following
truth table: (xx=58).
10
(xr+ 22), = (abcdefg).
a) Draw the corresponding Karnaugh map for the Sum of Products
(SOP) minimization
b) Obtain the minimal SOP expression for F(ABCD) from the map
c) Draw the corresponding standard SOP form circuit for F(ABCD)
10
АВCD
F
0000
1
0001
0010
0011
d) Draw the corresponding Karnaugh map for the Product of Sums
(POS) minimization
e) Obtain the minimal POS expression for F(ABCD) from the map
с
0100
0101
e
0110
0111
f) Draw the corresponding standard POS form circuit for F(ABCD)
1000
X
1001
1010
b
1011
1100
1101
e
1110
f
1111
g
x: don't care
Q3. Using the same F( ABCD) function given in Q2 and assuming the don't care outputs as 0, obtain
the SOP form minimal Boolean function using Quine-McCluskey method.
Transcribed Image Text:Q2. Assuming (xx +22),, =(abcdefg), , a Boolean function F(ABCD) is given by the following truth table: (xx=58). 10 (xr+ 22), = (abcdefg). a) Draw the corresponding Karnaugh map for the Sum of Products (SOP) minimization b) Obtain the minimal SOP expression for F(ABCD) from the map c) Draw the corresponding standard SOP form circuit for F(ABCD) 10 АВCD F 0000 1 0001 0010 0011 d) Draw the corresponding Karnaugh map for the Product of Sums (POS) minimization e) Obtain the minimal POS expression for F(ABCD) from the map с 0100 0101 e 0110 0111 f) Draw the corresponding standard POS form circuit for F(ABCD) 1000 X 1001 1010 b 1011 1100 1101 e 1110 f 1111 g x: don't care Q3. Using the same F( ABCD) function given in Q2 and assuming the don't care outputs as 0, obtain the SOP form minimal Boolean function using Quine-McCluskey method.
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