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Convert 0.6510 into binary.show your result up to 12 bits after the radix point. Then convert it into the IEEE- 754 single precision floating point formate.
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- Convert 0.6510 into binary. Show your result upto 12 bits after the radix point. Then convert it into the IEEE-754 single precision floating point format.Convert decimal 6,514 and 3,274 to both BCD and ASCII codes. For ASCII, an even parity bit is to be appended at the left.Convert 1.375 and 0.75 to the 14-bit floating point format of the textbook and add them up in that format, then convert your 14-bit result back to decimal and verify your computation.
- Show the binary sequence of the number (1111001.01)binary in IEEE 754 64bit floating point format.- What is the exponential part in decimal and binary?- What happens to the number part binary? (Although you don't show the rightmost zeros)- How does the whole number appear in binary? (Although you don't show the rightmost zeros)Show how each of the following floating point values would be stored using IEEE-754 double precision (be sure to indicate the sign bit, the exponent, and the significand fields): a) 12.5 b) −1.5 c) 0.75 d) 26.625Show 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
- Using 8 bits, what is the unsigned binary representation of each of the following values: A. 23 B. 55 C. 275 Please show the end result and please explain how you got the end result.Add the following pairs of 16-bit numbers (shown in hexadecimal) and indicate whether your result is “right” or “wrong.” First treat them as unsigned values, then as signed values (stored in two's complement format). 12cc+ed34 8000+8000 07c0+782eBy using 2’s Complement arithmetic, write the following decimal numbers to equivalent8-bit signed numbers and perform the addition. Write the final result after the addition by showing yoursteps. (check the image for reference) i. 6 ii. 14 iii. 15 iv. -6+ 3 + (-5) + (-25) + ( -9)
- Convert the given floating point format to decimal. BE580000; 32-bit format. See the example below.In the IEEE double-precision format, how many bits are reserved for the fractional part ofthe significand?Calculate (3.41796875 *10-3 * 6.34765625 *10-3) by hand, assuming each of the values arestored in the 16-bit half precision format described in in the textbook. Assume 1 guard, 1 roundbit, and 1 sticky bit, and round to the nearest even. Show all the steps, and write your answer inthe 16-bit floating point format.