Thursday, December 19, 2019
ECT114 Week3 Homework Essay - 1009 Words
ading Summary These are the automatically computed results of your exam. Grades for essay questions, and comments from your instructor, are in the Details section below. Date Taken: 7/24/2014 Time Spent: 5 h , 44 min , 39 secs Points Received: 20 / 26 (76.9%) Number of Attempts: 0 Question Type: # Of Questions: # Correct: Multiple Choice 15 12 Matching 1 1 Grade Details - All Questions Question 1. Question : (TCO 3) Determine the Boolean expression at TP1 with respect to the corresponding inputs. Student Answer: Instructor Explanation: TP1 is the output of an OR gate. The Boolean operator for the OR gate is + and the inputs are A and B. Refer to Chapter 3 of the textbook for more information. Pointsâ⬠¦show more contentâ⬠¦Points Received: 2 of 2 Comments: Question 10. Question : (TCO 3) Determine the correct output waveform for the circuit below. Student Answer: YOptionA YOptionB YOptionC YOptionD Instructor Explanation: Y should be HIGH (when A = 0 AND B = 1) OR (when C NAND = 1). YOptionD is the only waveform that meets those criteria. Points Received: 2 of 2 Comments: Question 11. Question : (TCO 3) Determine the Boolean expression at TP1 with respect to the corresponding inputs. Student Answer: Instructor Explanation: TP1 is the output of an XOR gate. The Boolean operator for the AND gate is ïÆ'⦠and the inputs are A and B. Refer to Chapter 3 of the textbook for more information. Points Received: 1 of 1 Comments: Question 12. Question : (TCO 3) Determine the Boolean expression at TP2 with respect to the corresponding inputs. Student Answer: Instructor Explanation: TP2 is the output of an XNOR gate. The Boolean operator for the XNOR gate is ïÆ'â¦, the XNOR gate requires an inversion bar over the entire expression, and the inputs are C and. Refer to Chapter 3 of the textbook for more information. Points Received: 1 of 1 Comments: Question 13. Question : (TCO 3) Determine the VHDL assignment statement at X with respect to the inputs. Student Answer: X = (A XOR B) OR NOT (NOT B OR C); X = (A XOR B) OR (NOT B NOR C); X = (A XOR B OR NOT B OR
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