A combinational circuit takes a 3-bit number N as an input and generates two outputs X and Y. The bits of the input are labelled A, B and C (A is the most significant bit and C is the least significant bit of the number N). The output X, is set to '1' when the input number N is odd and '0' otherwiso. The output Y is set to '1' when the input number N is even and '0' otherwise (0 is an even number) 1) Draw the truth table of the circuit. 2) Write the Minterm expansion of X in decimal form. 3) Write the Maxterm expansion of Y in decimal form.

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A combinational circuit takes a 3-bit number N as an input and generates two outputs X and Y. The bits of the input are labelled A, B and C (A is the most significant bit and C is the least
significant bit of the number N). The output X, is set to '1' when the input number N is odd and '0' otherwise. The output Y is set to '1' when the input number N is even and '0' otherwise (0 is
an even number).
1) Draw the truth table of the circuit.
2) Write the Minterm expansion of X in decimal form.
3) Write the Maxterm expansion of Y in decimal form.
4) Write the Minterm expansion of in decimal form.
Transcribed Image Text:A combinational circuit takes a 3-bit number N as an input and generates two outputs X and Y. The bits of the input are labelled A, B and C (A is the most significant bit and C is the least significant bit of the number N). The output X, is set to '1' when the input number N is odd and '0' otherwise. The output Y is set to '1' when the input number N is even and '0' otherwise (0 is an even number). 1) Draw the truth table of the circuit. 2) Write the Minterm expansion of X in decimal form. 3) Write the Maxterm expansion of Y in decimal form. 4) Write the Minterm expansion of in decimal form.
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