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- C++ Program: Make a program that would demonstrate the concept of Line Coding: Polar NRZ: Remember: if next bit is 1, there is inversion if next bit is 0, no inversion neg – means the signal is in the negative axis pos – means the signal is in the positive axis inv – means there is inversion no inv – means there is no inversion a. initially high (starts with positive, inverse is negative) Input: 1 1 1 0 0 1 0 1 1 0 0 0 Output: inv neg inv pos inv neg no inv neg no inv neg inv pos no inv pos inv neg inv pos no inv pos no inv pos no inv pos b. initially low (starts with negative, inverse is positive) Input: 1 1 1 0 0 1 0 1 1 0 0 0 Output: inv pos inv neg inv pos no inv pos no inv pos inv neg no inv neg inv pos inv neg no inv neg no inv neg no inv neg The logic here is when input is 1, next inputted 1 will be inverse…Complete the table below to show the numerical results from applying the indicated operation code to the data shown. Opcodes are six-bit numbers defined as shown below. R = 1 for Rotate 0 for Shift; D = 1 for Right 0 for Left; F is fill, and A2-A0 define the number of bits. R D F A2 A1 A0 Input(Base10) Input(Base2/8-bit) OpCode Output(Base10) Output(Base2/8-bit)) 47 00101111 110011 229 11100101 80 110111 17 011001 123 100011This flag is used by the instructions that perform BCD (binary .coded decimal) arithmetic Carry Flag O Parity Flag O Auxiliary Carry Flag O the Direction Flag O
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