Analyze the logic circuit shown below to letermine the circuit's truth-table. Using ruth table, derive the logic expression for putput F1.
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A: As per Bartleby guidelines we are allowed to solve only one question,please ask the rest again.
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Q: Home Work: Develop the truth table of the combinational logic circuit shown below. D Do D A В C
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Q: Q1: Let F1 AOB , F2 = AB, F3 = A+C, F4= F1 + F2 + F3 Implement the above Boolean expression with…
A: Here i have solved it using boolean algebra.
Q: 3. A
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A: The solution can be achieved as follows.
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A: The solution is as follows.
Q: 3
A: We will use k map to find the required expression then we will implement by logic gate.
Q: or the circuit shown below: Write combinational logic function for F. A В Write truth tables.
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Q: Q1: Let F1 = A©B, F2 = AB, F3 = A+C, F4 = F1+ F2 + F3 Implement the above Boolean expression with…
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Q: The Boolean expression for the logic circuit below is:
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Q: Find the boolean expression for the logic circuit shown below.
A: The given logic circuit is shown below:
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A: Redrawing the circuit by applying the input as shown below:
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- Question 3 Below is a Boolean expression. For the circuit corresponding to this Boolean expression, there is an equivalent circuit with at most two logic gates. Find it. Be sure to show your work. (~ P^~Q) V (~ PAQ) V (PA~Q)Task 3: Digital logic circuit analysis - Finding the Boolean expression of a given circuit Find the Boolean expression of the following circuit, draw the circuit on EWB and simulate it to fill-in its truth table shown below. W = Note: the logic converter tool from EWB to fill-in the following table. For that, you need to connect the A, B and C inputs of the logic converter to X, Y and Z lines, respectively. Further, you need to connect the "out' line of the logic converter to W. As shown in the following diagram EDHAIB Logic Converter 000000O00 ABCDEFGH Conversions 1OT AB + 10E + NAND AB C'+A B'C+AB C+AB C+ABC+ABC XTask 3: Digital logic circuit analysis - Finding the Boolean expression of a given circuit Find the Boolean expression of the following circuit, draw the circuit on EWB and simulate it to fill-in its truth table shown below. W = Y Note: the logic converter tool from EWB to fill-in the following table. For that, you need to connect the A, B and C inputs of the logic converter to X, Y and Z lines, respectively. Further, you need to connect the "out' line of the logic converter to W. As shown in the following diagram
- INSTRUCTIONS • Create a project, create a VI and Design the logic circuits below. You can create all the circuits in one VI. When done, use the save all function to save the project and the VI. Zip (not RAR) and save the files under your ID and name e.g. 10448989_Matthew_Fiifi_Hayford.zip. 1. F(X, Y, Z) = X + YZ Design the logic diagram below and simulate. Ensure that you get the output as shown in the truth table. X Y Z X+YZ or F 000 001 010 011 100 101 11 111 1 Y 1 1 1 > NConsider the multiplexer based logic circuit shown in the figure MUX MUX 1 Select one: a. W S1' S2' O b. W + S2 + S1 c. WS1 + WS2 + S1 S2 O d. WeS1es2Draw the logic circuit for F=A.(B+C) .
- Consider the multiplexer based logic circuit shown in the figure. W Do 0 MUX AF = W S₁ S₂ S₁ B F = WS₁ + WS2 + S1S2 Which one of the following Boolean functions is realized by the circuit? C F=W + S₁ + S₂ 0 DF=W S1 S₂ MUX S₂ FThe given logic circuit is a simplification of which of the following circuit choices?what a logic function corresponds to the following arrangement? a.L =(S1 OR S2) AND (S3 OR S4)
- Question 4: For the number display below, we would like to identify Boolean expression for LEDS (outputs a through g2) that indicate numbers 11, 14, and 15. a. Please write the Boolean expressions for the two LEDS (outputs a through g2) based on the input signals So to S3. You do not need to simplify the Boolean expressions. b. Please draw the logit circuit for outputs a through g2 a2 Logic circuit 2. 88 5,5,5,50Using Boolean theorems, simplify the output expression for the circuit in the figure. Show all the steps used to simplify the expression.(a) A logic circuit shown in Figure Q.3 has a 4-bit input A and B, three 4-bit wide 2:1 muxes, a 4-bit adder, a 4-bit output F, and a carry flag C. For the given Table Q.3, fill in the value of output F and carry flag C for the given value of A, B, S0, S1 and S2. 51 52 1001 Flag C 0011 Figure Q.3 Table Q.3 A So S1 S2 F Flag C 0001 1000 0010 1001 1 1 0011 1101 0100 1101 1110 0111 1