3. Rewrite your truth table so that it takes only J and K as inputs, and uses 1, 0, Q and Q as values for Qneat. J K Qnext 1 1 1 1 4. Consider the same J-K flipflop from problem 6. Using J, K and Q, write a boolean algebra statement for Qnet. Remember you can always derive this from the truth table in 6 using Product of Sums, and then simplify.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Hi, so I currently have this for my question number #2. Can someone help me answer #3 and#4?

3. Rewrite your truth table so that it takes only J and K as inputs, and uses 1, 0, Q and Q as values for Qneæt.
JK Qnext
1
1
1
1
4. Consider the same J-K flipflop from problem 6. Using J, K and Q, write a boolean algebra statement for Qneat.
Remember you can always derive this from the truth table in 6 using Product of Sums, and then simplify.
Transcribed Image Text:3. Rewrite your truth table so that it takes only J and K as inputs, and uses 1, 0, Q and Q as values for Qneæt. JK Qnext 1 1 1 1 4. Consider the same J-K flipflop from problem 6. Using J, K and Q, write a boolean algebra statement for Qneat. Remember you can always derive this from the truth table in 6 using Product of Sums, and then simplify.
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