Question: Consider a 1010-bit floating-point representation based on the IEEE floating-point format, with one sign bit, 55 exponent bits and 44 fraction bits. The exponent bias

Consider a 1010-bit floating-point representation based on the IEEE floating-point format, with one sign bit, 55 exponent bits and 44 fraction bits. The exponent bias follows the IEEE standard.

Interpret the bitstring 1_00000_1000 with base 2 using this 1010-bit floating-point representation and fill in the table below. You may use expressions if it's useful.

Consider a 1010-bit floating-point representation based on the IEEE floating-point format, with

Field Mean Value The value represented by considering the exponent field to be an unsigned integer (as a decimal value) The value of the exponent after biasing (as a decimal value) The numeric weight of the exponent (as a decimal value) The value of the fraction (as a fraction such as 3/4 or the exact floating point number) The value of the significand(as a fraction s point number) The value of the number in decimal. The 's' is equal to +1 if the number is positive and -1 if it is negative. 2E uch such as 7/4 or the exact floating s*2E M

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