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- Floating point calculation: a Show the IEEE 754 representation for the decimal value -0.375 in single precision b. Find the decimal representation for the following single precision floating point number 1011,1111,0111,0000,0000,0000,0000,0000 c. Perform the addition and multiplication of the two floating point numbers in (a) and (b) in binary scientific notation, and represent the sum and product in single precision.Answer the following questions on floating-point representation: a) Convert AD510010 16 to an IEEE single-precision floating-point number b) Convert the following IEEE single-precision floating-point number to a decimal number: 10111111110100000000000000000000Enter the Double Precision Floating Point (DPFP) in hexadecimal for the decimal value +26.75.
- Enter the Single Precision Floating Point (SPEP) in hexadecimal for the decimal value -14.5.Enter the Single Precision Floating Point (SPFP) in hexadecimal for the decimal value +36.25. Enter the results in hexadecimal (include leading and trailing zeros): OxTo convert the decimal number 30 to an 8-bit binary number, use the following representation methods: How would you describe something that is the reverse of what it is?
- Calculate the following floating point addition. (3 digits are assigned for the mantissa.) Show your calculations. 0.345 x 104 + 0.767 × 1031- Given the value "OX40F40000" represents a single-precision IEEE floating-point number. Answer the following questions: (a) Represent the number in the format + 1.M × 2x (b) Find the decimal value for this number. Show your work by showing all steps needed to reach the final answer.J - For the IEEE 754 single-precision floating point, what is the number, as written in binary scientific notation, whose hexadecimal representation is the following? FF80 0000
- Perform the multiplication of the following two floating point numbers using the simple floating point format :(-0.75*23)*(-0.625*22) . Do the calculation in base 10 and comment on the accuracy of your calculation. 5) Determine the 32-bit binary representation for floating point numbers in the form +1. F x be Where, i is the integer part, F is the fraction, b is the base, and e is the exponent. Using this format, represent the number 0.00001011001100101 as a 32 bit floating point number.Floating point numbers are numbers that support decimal points Express the following numbers in hexadecimal IEEE 32-bit floating-point format 320 -62