Variable x has 4-byte representation 0x01234567 Address given by &x is 0x100 If the machine uses little endian byte ordering which of the following table presents variable in machine memory
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- Question 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 themQuestion 6 a) The IEEE Standard 754 representation of a floating point number is given as: 01101110110011010100000000000000. Determine the binary value represented by this number. b) Convert each of the following 8-bit two’s complement binary values to decimal. i) 10110111(base 2) ii) 01001101(base 2) iii) 11010111(base 2) iv) 01110111(base 2) c) Discuss the differences between static RAM and dynamic RAMQuestion 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 them
- Consider an 8-bit floating point format. In this representation 4 bits are reserved for the mantissa and 3 bits are reserved for the exponent and 1 bit is reserved for the sign of the number. The exponent of the number is stored with a bias = 3. Express the decimal number 4.75 in this 8 bit floating point format. Write down the next bigger representable number in decimal base. B If you would be conducting the following operation using this 8 bit floating point format what would the result of the following calculation be ? 4.75 + 0.05 - 4.75 Express the decimal number 4.75 in this 8 bit floating point format. [10] b) Write down the next bigger representable number in decimal base. [7.5] c) If you would be conducting the following operation using this 8 bit floating point format what would the result of the following calculation be ? 4.75 + 0.05 - 4.75Given that a computer uses 4-bit ones’s complement numbers, what value will be stored in the variable j after the following code segment terminates? j = 1 k = -2 while(k != 0) { j = j + 1; k = k + 1; }with the given positive integer, find the all n-digit binary numbers, along with the their decimal representation in C++ VS example: Input: nDigits = 4Output:0000 -> 00001 -> 10010 -> 20011 -> 30100 -> 40101 -> 50110 -> 60111 -> 71000 -> 81001 -> 91010 -> 101011 -> 111100 -> 121101 -> 131110 -> 141111 -> 15
- 17.33 Lab: Vectors: Binary to decimal conversion A binary number's digits are only 0's and 1's, which each digit's weight being an increasing power of 2. Ex: 110 is 1*22 + 1*21 + 0*20 = 1*4 + 1*2 + 0*1 = 4 + 2 + 0 = 6. A user enters an 8-bit binary number as 1's and 0's separated by spaces. Then compute and output the decimal equivalent. Ex: For input 0 0 0 1 1 1 1 1, the output is: 31 (16 + 8 + 4 + 2 + 1) Hints: Store the bits in reverse, so that the rightmost bit is in element 0. Write a for loop to read the input bits into a vector. Then write a second for loop to compute the decimal equivalent. To compute the decimal equivalent, loop through the elements, multiplying each by a weight, and adding to a sum. Use a variable to hold the weight. Start the weight at 1, and then multiply the weight by 2 at the end of each iteration. The assignment is to find main.cpp In C++ please. Very urgent. Your help is very much appreciated.1) Find the equivalent decimal value of the following floating-point representation using IEEE 754 standard single-precision (32-bit floating-point number with bias = 127) 1 0111 1111 1110 0000 0000 0000 0000 000 (The quiz is expecting a decimal numeric entry. It will automatically suppress leading and trailing zeros. It will display your answer with commas every third digit.) 2) Find an IEEE 754 floating-point representation of -74.2 decimal number. Enter 32 bits without a space. (The quiz is expecting a fill in the blank text string in the entry box and grades on an exact match with the expected result. The answer should be formatted as a 32-bit IEEE 745 binary number representation)There are 2 numbers, X and Y in single-precision floating point representations. X=45B20000 and Y=B66C0000. Perform the multiplication operation on the two numbers using the floating-point number multiplication algorithm (the result is still in the floating-point format). Then convert each of them: X, Y and the results to a decimal number (fixed point).
- Given an integer N and an integer D, rotate the binary representation of the integer N by D digits to the left as well as right and print the results in decimal values after each of the rotation. Note: Integer N is stored using 16 bits. i.e. 12 will be stored as 0000.....001100. Example 1: Input: N = 28, D = 2 Output: 112 7 Explanation: 28 in Binary is: 000...011100 Rotating left by 2 positions, it becomes 00...1110000 = 112 (in decimal). Rotating right by 2 posita.Represent the number 1.01011010101 x 2-19 in IEEE Standard 754 single precision floating point binary. b.the IEEE Standard 754 representation of a floating point number is given as: 01101110110011010100000000000000. Determine the binary value represented by this number6. 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...0