Q16 i) For the logic diagram shown in Figure Q16i, predict the logic function of X. A-
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- 7)There are many situations in logic design in which simplification of logic expression is possible in terms of XOR and _ operations. a. NAND b. XOR c. NOR d. X-NORBoolean Algebra Simplify the following functions to a minimum number of literals. Show step-by-step simplification and indicate the theorem/postulate used in each step. Draw the logic diagram of each of the simplified functions. (A’ + C)(A’ + C’)(A + B + C’D)Boolean Algebra Simplify the following functions to a minimum number of literals. Show step-by-step simplification and indicate the theorem/postulate used in each step. Draw the logic diagram of each of the simplified functions. ABC’D + A’BD + ABCD
- Realize an AND OR NOT logic diagram for the Boolean Equation given by F=ABC+ABC+ABC+ABC+ABCBoolean functions F =B+ A'C i. Draw the logic diagram. ii. Determine the Truth Table iii. Obtain the Sum of Minterms iv. Obtain the Product of MaxtermsBoolean Algebra Simplify the following functions to a minimum number of literals. Show step-by-step simplification and indicate the theorem/postulate used in each step. Draw the logic diagram of each of the simplified functions. A’C’ + ABC + AC’
- b ) Draw the logic diagram for the given Boolean expression ' X ' and apply the De - Morgan's theorem for it .Boolean Algebra Simplify the following functions to a minimum number of literals. Show step-by-step simplification and indicate the theorem/postulate used in each step. Draw the logic diagram of each of the simplified functions. (x’y’ + z)’ + z + xy + wzGiven the following logic function:F = x’y’z’ + xyz + xy’z + x’yz’a. Show the truth table.b. Show the logic diagram.c. Simplify the logic function.d. Draw the logic diagram after simplification.e. Verify the logic using Logisim.