Report : For the following logic diagrams write the Truth table, Boolean expression, simplify the Boolean expression, and then draw it? A- Figure(1) B- Figure(2) Figure(3)
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- A Write the Boolean expression of the following Logic diagram. B C D=: For the following logic diagrams write the Truth table, Boolean expression, simplify the Boolean expression, and then draw it? A- Figure(1) A- Figure(2) A. Figure(3) Page 2 Of 2:For the following logic diagrams write the Truth table, Boolean expression, simplify the Boolean expression, and then draw it? A- Figure(1) A- Figure(2) A. Figure(3)
- Task 6: Simplifying Boolean functions in EWB using the logic converter Simplify the following Boolean expression in EWB using the logic converter F (A, B, C) = AB'C'+ A'B'C'+ A'BC'+ A'B'CWrite the Boolean expression for the logic diagram given below and simplify it as much as possible and draw the logic diagram that implements the simplified expression. Output B. Darea.) Write the boolean algebraic equation for Q in terms of A and B. b.) Simplify the equation using boolean algebra. c.) Create a four state truth table for Q in terms of A and B. d.) Which gate does the diagram represent.
- Write the Boolean expression that represents the combinational circuit, write the logic table and simplify the following using SOP. Please show complete solution. Thank you!Q2 Determine the Boolean expression for the logic circuit shown in Figure below. Simplify the Boolean expression using Boolean Laws and De Morgan's theorem. Redraw the logic circuit using the simplified Boolean expression and develop its truth table. A Co- FCreate a logic diagram out of this boolean expression. B'D+C'D+AB'+BCD' Note: All inputs A B C and D must be together.
- Task One: Air conditioning (AC) control system Design a simple AC control system that receives a signal from a digital thermometer sensor. Depending on the room temperature, the signal will control the air conditioner to operate in Heating, Ventilation, or Cooling modes. The digital thermometer signal produces a 4-bit binary number proportional to temperature, where 0000 represents 0 degrees and 1111 represents 48 degrees (so each binary number represents a multiple of 3 degrees). Consider the following specifications in your combinational logic circuit design: Whenever the temperature is less than T₁, the AC should operate in Heating. Whenever the temperature is greater than T2, the AC should operate in Cooling. Whenever the temperature is between T₁ and T2, the AC should operate in Ventilation. Where: T₁ = 14 + (your last digit of your university ID) mod 4 degrees T₂ = 17+ (your last digit of your university ID) mod 4 degreesUsing the Boolean rules, delermine the outputs of the logic circuits below: a) A b). c) c). B d) A5. Write the Boolean expression equivalent to the following logic circuit. Do not simplify! Hint: Each bubble has the same effect as an invertor. A B A C D D F