MNOP For the given logic circuit, find the following: a. Logic Equation or Output b. Simplified logic expression using Boolean Algebra c. Simplified circuit -S
Q: The bode plot of a transfer function is given below. has
A: option (a) One pole and one zero
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A: This is a basic problem of logic gate function. The detailed solution is given in the next step.
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A: The given system is, Here, Gs=1s,Hs=1s+a.
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A: The required parameters can be calculated by using mesh analysis and current division rule.
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A: Given data, Circuit diagram is given as,
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- For the input waveforms in Figure , what logic circuit will generate the output waveform shown? Explain in detail for each. Inputs B Output X Inputs B Output X6. For the follow logic circuit system, the output f is: 5 (A) ab. (B) a + b. (C) a'+b'. (D) a'b'. a bDesign a logic circuit with four inputs and one output that will produce "l" in the output only if the input patterns have odd number of zeros. a) Write the Boolean equation for the circuit in the simplest SOP form. b) Draw the logic circuit for the above equation in its simplest form. c) Re Design the logic circuit using NANI) gates only?
- 4. Figure 2 shows a logic circuit with output F Figure 2. Logic circuit with gate I (AND), gate II (AND), gate III (NOT), gate IV (AND), gate V (EXOR) and gate VI (OR) a. Find the Boolean expression of output F. b. The simplified Boolean expression of Output F. c. If the input A and C were High and Input B was Low, what is output F:Design the following combinational logic circuit with a four-bit input and a three-bit output. The input represents two unsigned 2-bit numbers: A1 A0 and B1 B0. The output C2 C1.C0 is the result of the integer binary division A1 A0/B1 B0 rounded down to three bits. The 3-bit output has a 2-bit unsigned whole part C2 C1 and a fraction part CO. The weight of the fraction bit CO is 21. Note the quotient should be rounded down, i.e. the division 01/11 should give the outputs 00.0 (1/3 rounded down to 0) not 00.1 (1/3 rounded up to 0.5). A result of infinity should be represented as 11.1. A minimal logic implementation is not required. (Hint: start by producing a truth table of your design).Basic Combinational Logic Circuits 2. Write the output expression for logic circuit: A B B X
- For the given logic circuit, find the following: a. Logic Equation or Outputb. Simplified logic expression using Boolean Algebrac. Simplified CircuitWrite the Boolean expression for the logic circuit in Figure 5. Simplify the Boolean expression using DeMorgan’s Theorem and Boolean algebra rules and laws. Show the steps of your simplification below.An X-input exclusive-OR gate and a Y-input exclusive-OR gate (where X=3, Y=4 have their outputs connected to a 2-input exclusive-NORgate. Do the following:a) Draw the logic diagram and analyze the logic expression of the output (in standard SOPform).b) List out all essential prime implicants.
- ) The input waveforms in are applied to logic circuit in figure below. Determine the output waveforms. B G2 C C D D ESelect a suitable example for for combinational logic circuit. O a. None of the given choices O b. De-multiplexer O c. PLA O d. Latchessimplify the logic circuit found in the figure below and provide the following: 1. Unsimplified Logic Expression 2. Simplification Process using Boolean Algebra 3. Simplified Logic Expression 4. Truth Table of the Simplified Logic Expression 5. Simplified Logic Circuit