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- Implement the TRUTH TABLE of the following state machine and DRAW the SCHEMATIC CIRCUITWhat is the smallest number of states in a Moore machine for which a Mealy machine could have fewer states? a. Two, since there could be a one-state Mealy machine that might do the same thing. b. Three, since there could be a simple Moore machine that went to one of two different states and always returned to the original state after that. For such a simple machine, a two-state Mealy machine is possible. c. You need at least four states to exploit the advantages of a Mealy machine over a Moore machine.13. Implement the circuit for the function with 3 inputs and 3 outputs using PLA after reducing the functions using k Map F(W, X, Y, Z) =Em(5, 8, 9, 12, 13) G(W, X, Y, Z) =Em(1, 3, 5, 8, 9, 11)
- A given room has two push-button switches S1 and S2 that are used to control a light bulb (e.g., one switch near each door of a room with 2 doors) as shown in below. You are to design a logic circuit so that the bulb can be controlled (essentially, toggled) by either switch.a. Write down the above scenario in an IF-THEN condition format b. Develop a truth table for the above case c. Develop a minimized Boolean function in SOP form11. Simplify the following Boolean function F, together with the don’t-care conditions d :1. In the following sequential circuit. There are 2 D FF (A and B), 2 inputs (x and y), and 1 output z The output and next-states equations are given A(t+1) = x′y + xA B(t+1) = x′B + xA z = B a- Draw the logic diagram of the circuit. b- List the state table for the sequential circuit. c- Draw the corresponding state diagram. 2. Reduce the following state machine using an implication table. 3. Design a sequential circuit that produces “1” on its output if it detects the sequence “1001” on it’s input. The detector should keep checking for the appropriate sequence and should not reset to the initial state after it has recognized the sequence. only answer 2 and 3 questions
- The following logic circuit has four inputs A, B, C, and D. Write the Boolean expression for X. Can we simplify it?Implement the following Boolean function F, together with the don’t-care conditions d, using no more than two NOR gates: F (A, B, C, D)=Σ(2, 4, 10, 12, 14,) d(A, B, C, D)=Σ(0, 1, 5, 8)Assume that both the normal and complement inputs are available.digital logic Simplify the following Boolean functions by first finding the essential prime implicants: F(w, x, y, z) = ∑(0,1,4,5,6,7,9,11,14,15)
- We have a circuit that counts from 1 to 14. This circuit output (1,2,4,6,7) will turn on red light, (3,5,8,11) will turn green light, no light will come on behind it. a) Obtain the simplest form of the function with K-map. Draw its circuit. Note: There are no 0 and 15, X will be placed on these eyes. b) Draw the circuit as AND-OR. If there are common expressions, do not calculate twice. c) Draw the circuit with NANDs only.Please help me solve problems 10,11 and 12 below. Simplify the following expressions using Boolean Algebra. Please provide a clear and readable solution. Thanks in advance!!! The course subject is Logic Circuits and Switching Theory.The following function is given. Implement it using a 3x8 multiplexer F (A, B, C, D) = ∏ (0, 2, 5, 9, 11, 14 d (don’t care) (A, B, C, D) = ∑ (3, 8, 10, 15) Draw truth tables, Karnaugh maps, logic diagrams