Question 2 (iii) Now sketch the same logic circuit as for (ii) above but only use NAND gates to implement the logic. A truth table indicating the state of an output, Z, as it depends on three inputs...


Just question (iii) and (iv) please


Question 2<br>(iii) Now sketch the same logic circuit as for (ii) above but only use NAND gates to<br>implement the logic.<br>A truth table indicating the state of an output, Z, as it depends on three inputs A, B and C is<br>given below:<br>A<br>B<br>1<br>1<br>1.<br>1.<br>1<br>1<br>1<br>1<br>1<br>1<br>1<br>1<br>(i) Write down the sum of products expression as represented by the truth table and then<br>simplify this expression if possible.<br>(iv) Show how you can also implement this logic using a generic 8:1 MUX instead of logic<br>gates.<br>(ii) Sketch the logic circuit that represent your simplified expression in (i)<br>Is<br>lo S2<br>So<br>4<br>5<br>

Extracted text: Question 2 (iii) Now sketch the same logic circuit as for (ii) above but only use NAND gates to implement the logic. A truth table indicating the state of an output, Z, as it depends on three inputs A, B and C is given below: A B 1 1 1. 1. 1 1 1 1 1 1 1 1 (i) Write down the sum of products expression as represented by the truth table and then simplify this expression if possible. (iv) Show how you can also implement this logic using a generic 8:1 MUX instead of logic gates. (ii) Sketch the logic circuit that represent your simplified expression in (i) Is lo S2 So 4 5

Jun 11, 2022
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