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7. The combinational logic circuit shown below is made of an active low 2 -to-4 decoder and a 4 -to-1 MUX with ( mathrm{B} )
7. The combinational logic circuit shown below is made of an active low 2 -to-4 decoder and a 4 -to-1 MUX with ( mathrm{B} ) as the more significant selector for both. Express ( f(a, b, c, d) ) in terms of ( Sigma m(ldots . ).( ) . ) [10] 7. The combinational logic circuit shown below is made of an active low 2 -to-4 decoder and a 4-to-1 MUX with B as the more significant selector for both. Express f(a,b,c,d) in terms of m(...)
7. The combinational logic circuit shown below is made of an active low 2 -to-4 decoder and a 4 -to-1 MUX with ( mathrm{B} ) as the more significant selector for both. Express ( f(a, b, c, d) ) in terms of ( Sigma m(ldots . ).( ) . ) [10]
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