0 0 votes $\text{what is the o/p of this circuit ?}$ Digital Logic digital-logic digital-circuits + – iarnav 1.1k views answer comment Share Follow Print 0 reply Please log in or register to add a comment.
Best answer 1 1 vote The circuit is The Output of the $1^{st}$ NOR Gate will be Truth Table : $a$ $a$ $Output = \overline{a}$ $0$ $0$ $1$ $1$ $1$ $0$ The output of the $2^{nd}$ NOR Gate will be: Truth Table : $b$ $c$ $Output = \overline{b+c}$ $0$ $0$ $1$ $0$ $1$ $0$ $1$ $0$ $0$ $1$ $1$ $0$ The output of the $3^{rd}$ NOR Gate will be Truth Table : $a$ $b$ $c$ $\overline{a}$ $b+c$ $\overline{b+c}$ $\overline{a}+\overline{b+c}$ $\overline{\overline{a}+\overline{b+c}} = $ $a.(b+c)$ 0 0 0 1 0 1 1 0 0 0 1 1 1 0 1 0 0 1 0 1 1 0 1 0 0 1 1 1 1 0 1 0 1 0 0 0 0 1 1 0 1 0 1 0 1 0 0 1 1 1 0 0 1 0 0 1 1 1 1 0 1 0 0 1 ∴ The output of the circuit will be : $f = \overline{\overline{a}+\overline{b+c}} = a.(b+c)$ Subarna Das answered May 24, 2018 • selected May 24, 2018 by iarnav Subarna Das comment Share Follow See 1 comment 1 1 comment reply iarnav commented May 24, 2018 reply Follow flag Hands down, thanks! 0 0 replyShare Please log in or register to add a comment.
1 1 vote You could do it directly using $NOR$ Gate, Small circuits, Wouldn't take much time. But must faster way to solve it is that It is a Two-level NOR-NOR Circuits, So, It can be Replaced by Two Level OR-AND circuit. i.e. Both NOR Gates at the first level can be replaced by OR gates and the NOR gate at the second level can be replaced by AND gate. Thus, We have $f = a(b+c)$ Deepak Poonia answered May 24, 2018 Deepak Poonia comment Share Follow See 1 comment 1 1 comment reply iarnav commented May 24, 2018 reply Follow flag thanks 0 0 replyShare Please log in or register to add a comment.
1 1 vote F= a(b+c) abhishekmehta4u answered May 24, 2018 abhishekmehta4u comment Share Follow See 1 comment 1 1 comment reply iarnav commented May 24, 2018 reply Follow flag Thanks! :) 0 0 replyShare Please log in or register to add a comment.