convert the following decimal numbers to 6- bit two’s complement binary numbers and subtract them. Indicate whether or not the difference overflows a 6-bit result. −1910-(+1410) =
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A: Given:
convert the following decimal numbers to 6-
bit two’s complement binary numbers and subtract them. Indicate whether or not the
difference overflows a 6-bit result.
−1910-(+1410) =
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- Extend the following 4-bit values to 7-bits using zero-extension. Write the final result in hexadecimal. OXFConvert the following two’s complement binary fixed-point numbers to base 10. The implied binary point is explicitly shown to aid in your interpretation. (Note: You should show all steps) 0110.1011 1111.1111Show the IEEE 754 binary representation for the following floating- point numbers. a)-6.12510 ➜ To IEEE 754 single precision S E Significand b) +6.12510 To IEEE 754 double precision S E Significand
- Convert the following decimal numbers to 6-bit two’s complement binary numbers and add them.Indicate whether or not the sum overflows a 6-bit result (-16) + (-25):a. 100011 overflowb. 100111 no overflowc. 110000 no overflowd. 010111 overflowRepresent the following numbers to its 6-bit binary representation and perform binary subtractionusing 2’s compliment representation 50-30?Represent decimal 3984 in the 2421 code. Show that complementing all bits of the coded number produces the 9's complement of 3984 in the 2421 code. Note: The decimal number 9 is represented in 2421 code as 1111
- Add the following 8-bit two's complement numbers. Write the final result of the addition in hexadecimal and indicate whether overflow occurred. Ox76 + Ox51 Result: (in hexadecimal) Overflow occurred? (Yes or No)Represent the decimal number -66 in 8-bit binary number using Two's complement representation method.Convert the following. Find byte-length 1’s complement binary number for decimal -101.
- Given the following 32-bit number in IEEE754 floating-point number format, B = Ox4OBC0000 c) Consider the following subtraction, Z = B - 9.625 Convert the result Z to 32-bit IEEE754 floating number format. Express it in hexadecimal.The following 6-bit binary numbers have a sign in the leftmost position and if negative are in 2’s complement form. Perform the indicated arithmetic operations and indicate whether an overflow occurs. A) 001011+100110= Overflow? B) 101110-110111= Overflow?Convert the following two’s complement binary fixed-point numbers to base 10. The implied binary point is explicitly shown to aid in your interpretation.( show all the steps) a)011101.10101 b)100110.11010