Perform the following additions, all in the binarysystem:a. 11001011 + 101111b. 10011001 + 1111011c. 11101001 + 10011011
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Perform the following additions, all in the binary
system:
a. 11001011 + 101111
b. 10011001 + 1111011
c. 11101001 + 10011011
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- Which of the following is the BCD code equivalent of the number 110010111 in the binary number system? A 001100010010 B 010000000111 C 001110010010 D 001101000110 E 001110000001Find the decimal equivalent of the following binary numbers:a. (1010.0101011)2 =b. (10111.101)2 =Subtract 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.
- Q1 A: Perform subtraction on the given unsigned binary numbers using the 2’s complement of the subtrahend. ( 10011 – 10010 ) *Perform the binary division 110110110.110101 ÷ 100 ?3 - Assume that a five-bit binary counter starts in state 00000b. What will your count be after 157 input pulses? a. 11111b b. 10101b c. 10001b d. 11101b e. 11011b
- Express the number 0000 0004 as an 8-bit binary number and find the complement to 2. Subtract this number from the number 0101 1011 by the method that complements it to 2.Convert each of the following 8-bit two’s complement binary values to decimal. I)101101112 ii) 010011012 iii) 110101112 iv) 011101112Find the one’s and two’s complements of the binary numbers: a. * 11101000; b. 00000000; c. 10101010; d. 11111100; e. 11000000.
- Attach the proper even parity bit to the following codes:a) 11010b) 1001c) 0111101Boolean expression of a logic operation is given below: (a) Simplify the Boolean expression using Boolean algebra and De Morgan’s Theorems (b) Draw the circuit to implement the expression you obtain using NAND or NOR gates onDraw a Digital clock signal using positive and negative logic for given binary stream. (11111100011100011101)