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multiple choices Question #4 • Determine the operation performed by the ALU for the given value...
Design a 4-bit ALU with the truth table above. In this design A
and B are two 4-bit binary inputs, s0, s1, s2, s3 and Cin are
control signals. There is no need to draw the internal circuits of
MUX & Full adders but I need the logic gates drawn
out.
S3 S2 s1 Cin Operation 0 A 0 0 0 1 A+1 0 0 1 10 A+B 0 1 1 A+B+1 A+B 0 0 0 0 0 A+B'+1 0...
Given the following Karnaugh map AB CD 00 01 11 10 01 011 Draw a circuit that realizes the function above using one 8-to-1 multiplexer and any number of NAND gates. Observe that A, B and C are connected to the select inputs, SO, S1, and S2. 4-to-1 MUX -10 12 13 14 15 16 17 So Si S2 ABC
QUESTION 4 Mr. K's is a very popular hair salon. It offers high-quality hair styling and physical relaxabon services at a reasonable price, so I always has unlimited demand. The service process includes five activities that are conducted in the sequence described below. The time required for each activity is shown in parenthesis Activity 1: Welcome a guest and offer homemade herb tea (10 minutes) Activity 2: Wash and condition hair (10 minutes) Activity 3: Neck, shoulder and back stress...
Problem 7. Consider the 74x194 4-bit bidirectional universal shift register shown below Determine the operation of this circuit by filling out the table. Assume that the register is cleared initially as indicated by the first row in the table, and then connected to +5V (before time t), as shown in schematic. Also assume that t 'is that time at which a positive edge occurs in the input signal 'clock'. Si and S0 inputs (given) are used to switch between modes...
QUESTION 9 Given F(S) = 1/(5+1X5+3)) the fit) would be: A. None of the choices are correct B. Exponentially increasing C. Since the roots of F(s) are real and distinct, the time response would be real and constant D. Exponentially decaying E. Sinusoidal QUESTION 10 If in an RC circuit, the capacitance is increased by 25% and the resistance, R. is decreased by 10%, the time constant, A. Will be decreased by 12% B. Will be increased by 36.5% C....
5) Decoders: Given the following circuit, S0 and S1 are computed using a 4-2 priority encoder with the priorities indicated on the figure. (hint: IDLE signal is always 0, if any of the inputs 10,11,12, or 13 is 1) 6 points) 4-to-2 Priority Encoder 10 YO YI 13 IDLE 13> 11 > 12>10 12 Full c Adder So Fill the following table showing the output signals S0 and SI given the input signals w, x, y, a) and z. Prof...
Question 6 Consider the system shown in Figure 4. The open-loop transfer function is given by G() = - 2 (3+1)(0.59+1) Figure 4 Control diagram for Question 6 With the help of Matlab, design a compensator ab, design a compensator so that the static velocity error constant Kv is 5 sec, the phase margin is at least 45°, and the gain margin is at least 10 dB. [20]
Question 17 3 pts Refer to Table 4-1. c D E 1 2 3 A Price $12 $10 $8 $6 $4 $2 B D 5 8 11 13 16 18 S 19 17 15 13 11 9 4 S2 14 12 10 8 9 12 15 18 21 24 5 6 7 4 Table 4-1 Suppose that D1 and S1 are the prevailing demand and supply curves for a product. If the demand schedule changes from D1 to D2, then:...
Electronics1. It's a multiple choices question. use the formula
sheet if needed (the last picture).
Question 6 CIRCUIT C2 (2.5 Marks) Statement: Sketching relevant output (Velc) characteristics decide on Q-point coordinates and DC load-line details: That is, determine DC operating conditions of the NPN-BJT/Si circuit of Fig.6 (denoting the type Circuit C2). Assume the following: Vcc= 30 volt; Re-2.0 k; R31 – 15 k; Ra2 = 7.5 k; ; Re-2.0k; V: - 9.3 volt; and, a -0.98684 +Vec Ic Re:...
Electronics1. It's a multiple choices question. use the formula
sheet if needed (the last picture).
Question 3 CIRCUIT B1 (2.5 Marks) + VC Rc IRC < + RB IC IB V ce → IE FIG. 3: CIRCUIT B1 Statement: Sketching relevant output (V-Ic) characteristics decide on Q-point coordinates and DC load-line details: That is, determine DC operating conditions of the NPN-BJT/Si circuit of Fig.3 (denoting the type Circuit B1). Assume the following: Vcc= 20 volt; Rc = 2.5 k; RB...