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Morris Mano Edition 3 Exercise 5 Question 34 (Page No. 201)
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Derive the PLA Programming table for the combinational circuit that square a 3-bit number.Minimize the number of product term.
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Morris Mano Edition 3 Exercise 5 Question 35,36 (Page No. 201)
List the PLA programming table for the BCD-to-excess-3-code converter whose boolean functions are given in the figure. repeat the above problem using a PAL.
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Morris Mano Edition 3 Exercise 5 Question 33 (Page No. 201)
Tabulate the PLA programming table for the four boolean functions given. Minimize the number of product terms. $A(x,y,z) = \sum (1,2,4,6)$ $B(x,y,z) = \sum (0,1,6,7)$ $C(x,y,z) = \sum (2,6)$ $D(x,y,z) = \sum (1,2,3,5,7)$
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Morris Mano Edition 3 Exercise 5 Question 31 (Page No. 200)
Tabulate a truth table for an $8 \times 4$ ROM that implements the following four boolean functions: $A(x,y,z) = \sum (1,2,4,6)$ $B(x,y,z) = \sum (0,1,6,7)$ $C(x,y,z) = \sum (2,6)$ $D(x,y,z) = \sum (1,2,3,5,7)$
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Morris Mano Edition 3 Exercise 5 Question 31 (Page No. 200)
specify the size of a ROM ( Number of words and number of bits per words) that will accommodate the truth table for the following combinational circuit components: A binary multiplexer that multiplies two 4-bit numbers. A 4- ... to-1 line multiplexer with common select and enable inputs. A BCD-to-seven-segment decoder with an enable input.
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