What would be the IEEE 754 double precision floating point representation of 1.32487359893280124981233898124124 × 10-17. For explanation, I want you to document the steps you perform, in this order: (1) What is n indecimal fixed point form (ddd.ddddd); (2) What is n in binary fixed point form (bbb.bbbb), storing the first 110 bitsfollowing the binary point); (3) What is the normalized binary number, written in the form 1.bbbbb…bbb × 2e, storing54 bits following the binary point) (4) What are the 52 mantissa bits, after the bits in bit positions -53, -54, … areeliminated using the round to nearest, ties to even mode; exclude the 1. part; (5) What is the biased exponent indecimal and in binary? (6) Write the 64-bits of the number in the order: s e m; and (7) Write the final answer as a 16-hexdigit number.
What would be the IEEE 754 double precision floating point representation of 1.32487359893280124981233898124124 ×
10-17. For explanation, I want you to document the steps you perform, in this order: (1) What is n indecimal fixed point form (ddd.ddddd); (2) What is n in binary fixed point form (bbb.bbbb), storing the first 110 bitsfollowing the binary point); (3) What is the normalized binary number, written in the form 1.bbbbb…bbb × 2e, storing54 bits following the binary point) (4) What are the 52 mantissa bits, after the bits in bit positions -53, -54, … areeliminated using the round to nearest, ties to even mode; exclude the 1. part; (5) What is the biased exponent indecimal and in binary? (6) Write the 64-bits of the number in the order: s e m; and (7) Write the final answer as a 16-hexdigit number.
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