6. Express the following gray code numbers as binary numhers: b) 0110101 7. Express the following decimal numbers as 2421 codes: a) 100111100 c) 10110010101 a) 168 b) 6735 c) 9021 d) 254
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- Q4/ The decimal 793.251)= ( number O 1431.200 O No one of them 1431.204 number ( O 1341.200 O 1341.201 ) in octalConvert the following numbers: 10101010 binary to hexadecimal Hexadecimal number BEAD to decimal Decimal number 129 to binary. Decimal 47802 to hexadecimal.b) There are five binary or hexadecimal numbers and six decimal conversions. Draw a line to connect each binary/hexadecimal to decimal number. Binary/Hexadecimal Decimal 4E 78 11011010 157 10011101 167 A7 25 19 218
- Convert the following number into binary number to octal and then to decimal. Answer all the question and provide step by step solution. a) 11011100.101010 b) 01010011.010101 c) 10110011Q1. Convert the BCD number (100001000111.1001)Bcd into its equivalent Hexa-decimal number.(10101101.101)2 to Decimal, Octal, and Hexadecimal.
- Q3) A - Convert the Excess-3 to binary number : ( 110001011100.10001010)ex-3 B- convert each Gray code to binary: 1-( 011010001001)G 2-(59)DQUESTION 1 In digital system, the number system is used to represent the information and the system has different bases. Define the term of sign bit in a binary number. Convert the number 100110102 into Hexadecimal. Convert the number 125, into Decimal. a) b) c) d) i) ii) iii) Convert the following numbers into the respective code. Show all steps in the calculations. i) ii) 27 into Gray Code. 11011010₂ into Binary Coded Decimal (BCD). Using 8-bit 2's complement number system, show the arithmetic operation of the following expressions: 01111001BCD - 258 i) ii) -49-2B16 Draw the logic circuit for output F in the following expression by using NAND gates only. F = ABC + AC(c) Figure Q3(c)(i) shows a register and Figure Q3(c)(ii) shows the input waveforms (CLOCK and Data in) to the circuit. A1 A9 A10 A2 Function generator A3 A11 A12 AS A13 A6 A14 A7 A15 Data in Bop.7) ip.r 82p.7) Logic analyser U1 U2 U3 U4 UO 6. 1. 6 1 6 INVERTER 3 CLK 3 CLK oCLK CLK 5 K K 5 K K 4027 Clock Function generator Figure Q3(c)(i) (i) Determine the type of register as shown in Figure Q3(c)(i).
- Problem 4 1-13.* Convert the following binary numbers to their equivalent decimal values. (a) 110012 Show Procedure (b) 1001.10012 (c) 10011011001.101102(i) Convert decimal number 567 to Octal (ii) Convert decimal number 39 to binary (iii) Convert decimal number 644 to hexadecimal (iv) Convert hexadecimal value C9 to binary. Convert (0.677)10 into an octal number1. An arithmetic system operates with 3-digit decimal numbers with sign presented in BCD (12 bits), negative numbers utilize the 10's complement form, one decimal digit (4 bits) is occupied by sign: 0 for "+" and 9 for "-". 1a) Show the most positive and the most negative numbers in both decimal and BCD forms. 1b) Present numbers A=+36 and B= -42 in BCD. 1c) Present the 10's complements of A and B in BCD. 1d) Perform the following operations bit-by-bit, show carries, apply BCD correction (add 6) when necessary (the sum of two decimal digits is greater than 9). 1d1) A+B in BCD. 1d2) A - B = A+(-B) in BCD by addition of A and the 10's complement of B. 1d3) B-A= B + (-A) in BCD by addition of B and the 10's complement of A.