Write the normalized floating-point representation of (+ 33.025)10. Assume 16 bits to represent mantissa and 8 bits to represent exponents. Compare 84-2-1and 8421 code. Draw a figure for five bits odd parity generator and parity checker.
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2.
Write the normalized floating-point representation of (+ 33.025)10. Assume 16 bits to represent
mantissa and 8 bits to represent exponents. Compare 84-2-1and 8421 code. Draw a figure for five bits
odd parity generator and parity checker.
Step by step
Solved in 2 steps with 2 images
- Given the following 32-bit number in IEEE754 floating-point number format,B = Ox4OBC0000 b) Determine the hexadecimal representation in IEEE754 double-precision floating-point number format of the following two cases,i. \sqrt{-1} and, ii. Negative infinity Remark: need clearly show all bit fields in hexadecimal format and clear stepGiven a floating point representation 10110 11101101000 (5-bit exponent and 11-bit significant) Question: if the exponent is in two’s and the significant is in one’s, what are its normalized floating point representation in hexadecimal and its real value in hexadecimal? Please answer based on given numbers.Expressnumber –62 in hexadecimal IEEE-75432-bit floating-point format.Show all the steps.
- Given a floating point representation 10110 11101101000 (5-bit exponent and 11-bit significant) if the exponent is in two’s and the significant is in one’s, what are its normalized floating point representation in hexadecimal and its real value in hexadecimal?Question 7 Assume we are using the simple model for floating-point representation as given in this book (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). 01011011001000 + 00111010000000 = ?Given a floating point representation 10110 11101101000 (5-bit exponent and 11-bit significant) 3. if the exponent is in signed magnitude and the significant is in two’s, what are its normalized floating point representation in hexadecimal and its real value in hexadecimal?
- 2. Assume we are using the simple model for floating-point representation as given in this book (the representation uses a 16-bit format, 5 bits for the exponent with a bias of excess-15, a normalized mantissa of 10 bits, and a single sign bit for the number): Show how the computer would represent the numbers a) +3.53125 and -3.34375 using this floating-point format. a) +3.53125 b)-0.093756. Assume we are using a simple model for floating-point representation similar to the one used in Chapter 2 of the textbook which has a 14-bit format, 5 bits for the exponent with a bias of 15 (not 16 as in the textbook), a normalized mantissa of 8 bits, and a single sign bit. Show how the computer would represent the numbers 12.125 using this representation.Floating-Point Representation. What is the floating-point value for binary 4. a) 11000010100000 using the simple model (14-bit format, 5 bits for the exponent with a bias 15, a normalized significand of 8 bits, and a single sign bit for the number)?
- Show how floating-point value 12.5 would be stored using IEEE-754 single precision (be sure to indicate the sign bit, the exponent, and the significand fields):1- Write the different numbers in base 10 a. (FA) 16 b. (101.011) 2 2. Write the following number in base 2 a. (123.22) 10 3. Realize the following additions in a 8 bits system using the 2's complement representation a. S1 = -51 +27 b. S2-51 - 27 c. S351 - 27 4. Realize the following addition using BCD representation a. S = 833 + 573With step by step solution please Using IEEE 754 representation for single precision floating point, give the 32-bit binary encoding for the numbers below. Show the sign, exponent, and mantissa (significand). a. -2.40625