18) Convert the expression below to the all NÁND form and show your work. X= (A+B+C) + CD +B

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18)
18) Convert the
expression below to the all
NAND form and show
your work.
X= (A+B+C) + CD +B
19) Determine the expression for
the logic circuit above.
20) Determine the expression for 21) Determine the expression for
the logic circuit above.
the logic circuit above.
X=
X=
X=
A
B
22) Neatly draw the
SÓP logic circuit for
the truth table to the
1
right. (A "logie cireuil" or
"Togic diagram" is not a
schemadic, see problems 19
- 21 for examples of a logie
circuit)
1
1
1
1
1
1
1
1
1
1
B
23) Neatly draw the
POS logic circuit for
the truth table to the
1
1
1
1
right.
1
1
1
1
1
1
1
1
1
Transcribed Image Text:18) 18) Convert the expression below to the all NAND form and show your work. X= (A+B+C) + CD +B 19) Determine the expression for the logic circuit above. 20) Determine the expression for 21) Determine the expression for the logic circuit above. the logic circuit above. X= X= X= A B 22) Neatly draw the SÓP logic circuit for the truth table to the 1 right. (A "logie cireuil" or "Togic diagram" is not a schemadic, see problems 19 - 21 for examples of a logie circuit) 1 1 1 1 1 1 1 1 1 1 B 23) Neatly draw the POS logic circuit for the truth table to the 1 1 1 1 right. 1 1 1 1 1 1 1 1 1
24)
24) Neatly draw the logic
circuit for the expression
below. Do not minimize
or change the expression.
(A + BC) + ABC + B
25)
25) Neatly draw the logic
circuit for the expression
below. Do not minimize
or change the expression.
(ABCHA•BNC + B)
Transcribed Image Text:24) 24) Neatly draw the logic circuit for the expression below. Do not minimize or change the expression. (A + BC) + ABC + B 25) 25) Neatly draw the logic circuit for the expression below. Do not minimize or change the expression. (ABCHA•BNC + B)
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