B Cor the above Logic circuit Cvalue ic 1 vrhon:
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Q: 2) Write VHDL code of the circuit as shown in figure INV AND2 AND2 X2 XOR2 OR3
A: Answer:-
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Q: Create a Truth Table and draw the logic circuit for (p ∨¬r) ∧ (¬p ∨ (q ∨¬r)).
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Q: e. What will be the output of the logic circuit if A = 0, B = 0, C = 1, D = 1.
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A: Answer :-- D) NOR
Q: A B C Figure 5-5 Logic Circuit for part 2. Y
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Q: 3- Design logic circuit by using a decoder which represents the equation F(A,B) = E(0,1,2)? %3D
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- Q3: A majority circuit is a combinational circuit whose output is equal to 1 if the input variables have more 1's than 0's. The output is 0 otherwise. Answer 3 of the following questions: A- Design a 3-input majority circuit by finding the circuit's truth table, Boolean equation, and a logic diagram? B- Program and determine how many Configurable logic block (CLB) you wouid need for such circuit in Part A to be implemented in the FPGA then program this FPGA to emulate 3-input majority if you know that the CLB structure are: Look-Up Table (LUT) MUX A+B-t OLR C- Redesign the logic circuit of Part A using universal logic gate NOR?Q1: Let F1 = X.Y , F2 = AOB , F3 = F1+ F2 Implement the above Boolean expression with logic circuit . giving the ... truth table.There are two major courses A and B, and two minor courses C and D in a department. A student can graduate if he or she passes: Both the major courses A and B or One major course and both minor courses C and D. Design a circuit to determine if the student can graduate or not. Part a: Determine the truth table. Hint: Use the name of the courses as the input variables of your truth table. i.e., A, B, C, D. Variable A is 1 if a student passes course A, otherwise 0. Part b: Write the function in sum of minterms form and simplify using K-map. Part c: Implement the simplified function on proteus and attach its screenshot. Note: Use 4-bit binary of your roll number’s last digit to show output in the screenshot. Part d: Implement the simplified function on virtual breadboard and attach its screenshot. Note: Use 4-bit binary of your roll number’s last digit to show output in the screenshot.
- 1. Use the 2-input version of the basic AND, OR, NOT gates to implement the following Boolean expression. Insert a drawing of your circuit here. Expression: (A + B)č. Use the 2-input version of the basic AND, OR, NOT gates to implement the following Boolean expression. Insert a drawing of your circuit here. Expression: (AB)(BC). Write the Boolean expression that is equivalent to the following circuit. D 2. Use the Word table tool to construct the truth table for this circuit. Be sure to include intermediate values. Insert columradings in the first row. Be sure to use the Insert > Equation tool so that standard Boolean logic symbols are displayed in the headings.1. Use the 2-input version of the basic AND, OR, NOT gates to implement the following Boolean expression. Insert a drawing of your circuit here. Expression: (A + B)T Use the 2-input version of the basic AND, OR, NOT gates to implement the following Boolean expression. Insert a drawing of your circuit here. Expression: (AB)(BC) Write the Boolean expression that is equivalent to the following circuit. B. D.Q1. A logic circuit implements the following Boolean function: F= A'C + AC'D' It is found that the circuit input combination A = C = 0 can never occur. Find a simpler expression for F using the proper don't care conditions. Design the logic circuit using the expression you find.
- B2. Write the Boolean equation directly from the following circuit: A Do F GDraw the circuit for the following Boolean expression: P = (X and Y) or (not X or Z)A' B D-D- B' The Boolean expression for the above logic circuit is ? O a. F = (A' + B) + (B' +C) O b. None of the above O c. F = A'B + B'C O d. F = A'B. B'C
- What is the State Equations of the following Circuit: A T T B R CLK reset9. Construct a truth table summarizing the operation of this circuit: A B C Out 10. Write a boolean expression for the circuit shown above. (Note: Do not simplify it.) 11. Write the simplified boolean expression for the circuit based on the truth table. 12. Picnics are enjoyable on sunny days that have no ants. They're also enjoyable anytime there's a hummingbird, as well as on days where there are ants and ladybugs. Write a Boolean equation for picnic enjoyment (E) in terms of sun (S), ants (A), hummingbirds (H), and ladybugs (L).Q1: Let F1 = X., F2 = AB, F3 = F1+F2 Implement the above Boolean expression with logic circuit giving the truth table. ***