Q4\ design synchronous counter with irregular binary count sequence shown in below using negative edge. T F.F 001101011111 001
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Q: Question 1: a) Determine the current i. 60V 18 Ω Μ 4Ω i=3A Μ 3Ω Μ 4Ω 3Ω
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Q: Determine Vout for Vin=169 V, R₁-234 Ohm, R₂-28 Ohm Un R₁3 www R23 -Vout
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Q: Find 2-¹[ 2s²+10s s² - 2s +5 (s +1)].
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Q: 2.22 For the circuit in Fig. 2.86, find i and iz. 20 mA 6ΚΩ Figure 2.86 For Prob. 2.22. 2 4 ΚΩ
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Q: 04: Obtain the transfer function C(s)/R(s) of the block diagram shown in the Fig.(4). Ri G₂ G₂ Ge Gy…
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Q: (B): Obtain the transfer function V₂(s)/V₁(s) of the electronic cct. shown in Fig. (3) Vi(s) C₁ R₂…
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Q: a) the terminal voltage b) the e.m.f. generated in the armature.
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Q: 04: Obtain the transfer function C(s)/R(s) of the block diagram shown in the Fig.(4). TOD Gy R(S) CU
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Q: Convert the logic diagram below to both NAND and NOR implementations. B D 거 E
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Q: Y11 for the following circuit is V O 0.4 S O 0.5 S 3.5 S O 0.45 S www 502 592 www >0.5V₂ 202 V₂
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- design 2 to 8 bit binary comparator and write it's summary?Design a 6bit digital to analogue converter with binary weighted resistive ladder network so that the analogue output for the bit sequence 100100 is -10 vThe values of A and B as 4 bit binary number and the value of M has been given regarding to Adder/Subtractor circuit, calculate V, C and four bit S value and write in table.
- For Arduino ZERO, using 2.23 V built in reference, what is the input code if the default bit resolution was used for Vin = 1 V?Design a binary counter with the following binary sequence: 2,0,1,0,1,2,1,1,2 and repeat. Use Jk flipflop.Q1 A: Perform subtraction on the given unsigned binary numbers using the 2’s complement of the subtrahend. ( 10011 – 10010 ) *
- Perform the following additions, all in the binarysystem:a. 11001011 + 101111b. 10011001 + 1111011c. 11101001 + 10011011Subtract 110010101 from the binary number 111010011 using the (1's complement) method, which integrates the binary number to 1. Describe the process steps you have performed.Question 5 a) Briefly explain the Nyquist theorem in the context of digital sampling. b) Using logic gates, design an active low chip select for the memory a 256 K memory device starting at address 38000016 in a 16 Megabyte memory space. c) Convert each of the following 8-bit signed magnitude binary numbers to decimal. i) 10110101(base 2) ii) 01000101(base 2) iii) 11101010(base 2) iv) 01011110(base 2)
- 9. The maximum bit uncertainty during a transition in 4-bit binary encoder is o 1bit o 2bits o 3bits o 4bitsWrite MIPS program that asks the user to enter an unsigned number and read it. Then swap the bits at odd positions with those at even positions and display the resulting number. For example, if the user enters the number 9, which has a binary representation of 1001, then bit 0 is swapped with bit 1 and bit 2 is swapped with bit 3, resulting in the binary number 0110. Thus, the program should display 6. Please only MIPSDesign a circuit with a truth table that converts a number between 0 to 7 in decimal to binary then passes it to another component that outputs the number in the output line of the decimal number. Demonstrate the value of input and output using '2'. Discuss the process in your own words. [Hint: The number passes from encoder to decoder. Consider there is no enable pin in the decoder.]