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(Solved): Realize the following functions using a single decoder of appropriate size and additional gates \ ...



Realize the following functions using a single decoder of appropriate size and additional gates
\[
\begin{array}{l}
F\left(x_



Realize the following functions using a single decoder of appropriate size and additional gates
\[
\begin{array}{l}
F\left(x_
Realize the following functions using a single decoder of appropriate size and additional gates \[ \begin{array}{l} F\left(x_{1}, x_{2}, x_{3}\right)=\sum \mathrm{m}(1,2,6,7) \\ G\left(x_{1}, x_{2}, x_{3}\right)=\prod \mathrm{M}(0,1,2,5,6) \end{array} \] Simulate the circuit using CEDAR logic or any other tool for all input combinations. Provide screenshots of the simulation waveforms. Realize the following functions using a single decoder of appropriate size and additional gates \[ \begin{array}{l} F\left(x_{1}, x_{2}, x_{3}\right)=\sum \mathrm{m}(1,2,6,7) \\ G\left(x_{1}, x_{2}, x_{3}\right)=\prod \mathrm{M}(0,1,2,5,6) \end{array} \] Simulate the circuit using CEDAR logic or any other tool for all input combinations. Provide screenshots of the simulation waveforms.


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Given that F(x1, x2, x3) =?m (1, 2,6,7) G(x1, x2, x3) =?M(0, 1,2,5,6). Here we have to simulate the circuit using CEDAR. Here the output is high for m
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