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for the following state table, use D-FFs to realize the circuit. (a) Assign codes in binary order to the states and determine a minimal-sum expression
for the following state table, use D-FFs to realize the circuit. (a) Assign codes in binary order to the states and determine a minimal-sum expression for the FF excitation and the output. (b) Use the adjacency rules as many as possible to come up with new coding assignments. (c) Determine the minimal-sum expressions for the FF excitation and the output.
Answer part A through C for this particular question and show all your steps and make sure to not skip any steps and make sure it is legible to read.
Table P7.24 \begin{tabular}{c|cc|c} \hline Present state & Next state & Output (z) \\ \hline & \multicolumn{2}{|c|}{ Input (x)} & \\ & 0 & 1 & \\ \hlineA & A & B & 0 \\ B & C & F & 0 \\ C & D & A & 1 \\ D & E & C & 0 \\ E & D & F & 0 \\ F & E & D & 1 \\ \hline \end{tabular} Table P7.24 \begin{tabular}{c|cc|c} \hline Present state & Next state & Output (z) \\ \hline & \multicolumn{2}{|c|}{ Input (x)} & \\ & 0 & 1 & \\ \hlineA & A & B & 0 \\ B & C & F & 0 \\ C & D & A & 1 \\ D & E & C & 0 \\ E & D & F & 0 \\ F & E & D & 1 \\ \hline \end{tabular}Step by Step Solution
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