Show the starting and ending address of each segment located by the following segment register values. 1. 56F8H 2. C802H 3. 7FFEH 4. 7103H 5. 1110
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- H.W :- 1) A four logic-signal A,B,C,D are being used to represent a 4-bit binary number with A as the LSB and D as the MSB. The binary inputs are fed to a logic circuit that produces a logic 1 (HIGH) output only when the binary number is greater than 01102-610. Design this circuit. 2) repeat problem 1 for the output will be 0 (LOW) when the binary input is less than 01112-710- Saleem LateefParts A ,B , and C. How is -89 represented using 8-bit two's compliment? (The answer should be 8 binary digits) Assume we are using the simple model for floating-point representation as given in the text (the representation uses a 14-bit format, 5 bits for the exponent with a bias of 15, a normalized mantissa of 8 bits, and a single sign bit for the number): Show how the computer would represent the numbers 100.0 using this floating-point format. Express the answer in hexadecimal using 4 hex digits. Suppose we are working with an error-correcting code that will allow all single-bit errors to be corrected for memory words of length 7. We have already calculated that we need 4 check bits, and the length of all code words will be 11. Code words are created according to the Hamming algorithm presented in the text. We now receive the following code word: 01111010101 Assuming even parity, according to our error-correcting code, in what bit is the error? Number the bits from the right…The value of (Binary 1011) + (Octal 15) is -- in Octal form. *
- III) Convert from Hexadecimal to Decimal (a) 1ACED716 (b) C1AC18A.E8B916 IV) Convert Decimal to Hexadecimal (a) 114510 (b) 3176.5410Q3) A - Convert the Excess-3 to binary number : ( 110001011100.10001010)ex-3 B- convert each Gray code to binary: 1-( 011010001001)G 2-(59)DWrite 8086 Assembly language program to generate Fibonacci sequence. The limit of the sequence is stored at location offset 500. The item will be stored from offset 600 onwards.
- Design the interfacing circuit shown below and write a program to display single digit (between 0 and 9) prime numbers followed by even numbers, the next odd numbers and repeats in 7-segment displays and its equivalent 8-bit binary value in LEDS. a) When displaying Prime numbers, the first 7-segment display must show "P" and the second 7-segment display must show prime numbers one by one b) When displaying Even numbers, the first 7-segment display must show "E" and the second 7-segment display must show even numbers one by one c) When displaying Odd numbers, the first 7-segment display must show "O" and the second 7-segment display must show even numbers one by oneProblem #4: Consider the Programmable Array Logic PAL module below '1' A B C D F₁ F2 F3 1. Determine the corresponding product term per row PRODUCT TERMS 0000001. Consider the CRC generator shown below. Determine the output of the CRC circuit (i.e. Q4 Q3 Q2 Q1 Q0, expressed as a decimal number) for the input sequence "1010" (input one bit at a time, left to right). Assume the CRC circuit is initialized to state 11111. D Q0 Q2 Q4 Q1 Q3 Clock - Data In
- Design the circuit that displays 35861429 on the seven segment display (just one). Use shift registers and button to slide numbers.Convert the following numbers: 10101010 binary to hexadecimal Hexadecimal number BEAD to decimal Decimal number 129 to binary. Decimal 47802 to hexadecimal.There exists one or more discrete ime signal. What is it control system ? (a) discrete time or (b) continuous time