From the truth table below, determine the standard SOP expression Inputs Output B X A C 0 0 0 0 1 1 0 1 000 فففف 1 1 1 1 0 0 0 1 1 0 1 1 0 1 0 1 0 0 1 0
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From the truth table below, determine the standard SOP expression
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- Exercises : Convert the following binary numbers to Hexadecimal numbers: (b) 1100111010002 (a)11001010010101112 (c) 101010. 101012 (d) 1111110001.011010012 0110111012 (e) 1011001110. Answers:Add the following BINARY NUMBERS 110000111.00011+ 110000000.11011What parity bit, P, should be added to the following data if the parity is EVEN? If the parity is ODD? a. 1111100 b. 1010110 c. 0001101
- Add the following unsigned binary numbers. a. 10101 + 1010 b. 101011011 c. 1111+1111 d. 11100+ 1110 e. 11001+ 10011 f. 111011+101001IH.W: Draw a logic eircuit of the following Boolean expression before and after simplification using karnough map and Boolean expression. Y-AB+ AB A B Y 1 1Convert the following binary numbers to decimal form: a. * 101.101; b. 0111.11; c. 1010.01; d. 111.111; e. 1000.0101; f. * 10101.011.
- Computer architecture 1. Perform the following calculations. All numbers are 8-bit Integers; except where noted. Show all work. Note any overflow. Note that 2c signifies 2s complement and sm signifies signed-magnitude. I suggest you check your answers in base 10. 11110110 - 100101112c= 11110110 & 00001111= Convert -1610sm to Base 16 Convert AD16c to Base 10 F9 + E916c=1. Convert the following decimal numerals to their binary, octal and hexadecimal equivalents (in case of infinite extension, compute the first 10 digits after dot): a. 55438, b. 237170, c. 586.609375 d. 22.016845703125 e. 416.712 2. Convert (416.715); to its decimal, binary, and hexadecimal equivalent 3. Find appropriate numeral system base, for which given equation is correct: a. 12,1 = 302/20 b. 41/3 = 13 c. 23+44+14+32 = 223 4. Find 8-bit l's complement numerals representing the following decimal numerals: a. 89 b. 135 c. 225 d. -37 e. -78 f. -128 g. -230 5. Repeat task 4, this time searching for 2's complement numerals 6. Compute: a. 11100 + 10001 b. 11100 + 00100 c. 01100 - 10011 assuming (one-by-one): signed-magnitude, l's complement, 2's complement representationProblem_#04] Draw the decoder that generates a logic "1" for each of the input shown below (c) 11011 (d) 11100 (g) 000101 (h) 1110110 (a) 1101 (e) 101010 (b) 1000 (f) 111110
- The binary string 11b10010111110 is a floating-point number expressed using the 14-bit simple model given in your text. What is its decimal equivalent? Note: in the 14-bit simple model, the left-most bit is the sign, followed by 5 bits for the exponent, followed by 8 bits for the mantissa (There are no implied bits). The exponent is in Excess 15 notation.Using Boolean algebra theorems, simplify the logic expression above as far as possible. Create a Circuit Diagram for the new expression Then create a truthtable for the simplified circuitP:22) Perform bit stuffing on the following data sequences. 110101111101011111101011111110 111111100011011111101100100010