Create the gray code representation of the following binary numbers. i) 10101 ii) 01001 iii) 10110 iv) 00111 v) 00101
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Create the gray code representation of the following binary numbers.
i) 10101 ii) 01001 iii) 10110 iv) 00111 v) 00101
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- Represent the following into floating point binary format given that the number is written into 10 bits. The first two bits represents the sign of the number and the exponent respectively, the next five bits represents the magnitude of mantissa and the remaining 3 bits represents the magnitude of the exponent. 123 324 -57.214 9134 -0.6543Create the gray code representation of the following binary numbers. i) 11101 ii) 01101 iii) 10111 iv) 00110Assume that each alphanumeric ASCII character is represented by 7 bits, decipher the following code: 100101011011111010001101110
- Perform the following additions and subtractions. Assume the numbers are stored in signed-magnitude base 2 representation -1010111 + -10011 -100110 – 110108) A number with 6 digits (in its decimal notation) will: a)have between 15 and 21 digits in its binary notation b)have 10 digits in its base 6 notation c)always occupy less than 21 bits in its notation in the 2's complement encodingQuestion 7 The Hexadecimal Representation for each of the following Binary number 10101101 Group of answer choices AD 173 DA none of them Question 8 The hexadecimal number 43 53 can be interpreted as representing a decimal number _________ or a pair of ASCII codes _________. Group of answer choices 17325 CS 17245 CS 17235 CS none of them Question 9 Assume that EBX and ECX have the following values EBX: FF FF FF 75 ECX: 00 00 01 A2 After the execution of the instruction ADD EBX, ECX The Value in ECX is _________ Group of answer choices 000001A2 00000117 FFFFFF75 none of them
- D. What is the minimum number of binary bits needed to represent each of the following unsigned decimal integers?I) 65II) 409III) 163856. Convert the following numbers from unsigned binary notation to decimal notation, and from 6-bit 2's complement notation to decimal notation: i) 110011, ii) 001101, iii) 101101 7. Show how each of the following floating point values would be stored using IEEE-754 single precision (be sure to indicate the sign bit, the exponent, and the significand fields): a. 12.5 b. −1.5 c. 0.75 d. 26.625 8. The following is a representation of a decimal floating value using IEEE-754 single precision. Find out the value in decimal. 0 10000011 10101000000...0Round the following binary numbers (rounding position is bolded – it is the bit at the 2-4 position) following the rounding rules of the IEEE floating point representation. I. 1.00111112 II. 1.10010012 III. 1.01111002 IV. 1.01101002 For each of the four (4) resulting rounded binary numbers, indicate - what type of rounding you performed and - compute the value that is either added to or subtracted from the initial binary number (listed above) as a result of the rounding process. In other words, compute the error introduced by the rounding (approximation) process. please note that the rounding is based on the bolded numbers!!! Not the 2s in the end those are just binary signs
- Question 18 Find the Binary Representation for each of the following Decimal numbers 10 Group of answer choices A 1010 0101 none of them Question 19 The hexadecimal number 48 61 can be interpreted as representing a decimal number _________ or a pair of ASCII codes _________. Group of answer choices 15829 ha 18529 HA 18529 Ha none of them Question 20 The Binary Representation for each of the following Hexadecimal number AD Group of answer choices 10101010 10101101 10110001 none of themE. What is the hexadecimal representation of each of the following binary numbers?I) 0011 0101 1101 1010II) 1100 1110 1010 0011III) 1111 1110 1101 1011Perform the following additions and subtractions. Assume the numbers are stored in signed-magnitude base 2 representation 1. -1010111 + -10011 Please show the process with details