Assume you have a combinational circuit with two inputs A and B representing a 2-bit binary number. The circuit has two outputs X and Y representing the hamming distance between the input and the number "01" Hint: the hamming distance between two binary numbers is the number of bits that are different between the two numbers (example: hamming distance between 11 and 10 is 1). 1. Draw the truth table of the circuit. 2. Write an Minterm expansion of Y (decimal form). 3. Write a Maxterm expansion of X (decimal form). 4. Write a Maxterm expansion of Y (decimal form.

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Question 10
Assume you have a combinational circuit with two inputs A and B representing a 2-bit binary number. The circuit has two outputs X
and Y representing the hamming distance between the input and the number "01".
Hint: the hamming distance between two binary numbers is the number of bits that are different between the two numbers
(example: hamming distance between 11 and 10 is 1).
1. Draw the truth table of the circuit.
2. Write an Minterm expansion of Y (decimal form).
3. Write a Maxterm expansion of X (decimal form!).
4. Write a Maxterm expansion of Y (decimal form).
Use the editor to format your answer
Transcribed Image Text:Question 10 Assume you have a combinational circuit with two inputs A and B representing a 2-bit binary number. The circuit has two outputs X and Y representing the hamming distance between the input and the number "01". Hint: the hamming distance between two binary numbers is the number of bits that are different between the two numbers (example: hamming distance between 11 and 10 is 1). 1. Draw the truth table of the circuit. 2. Write an Minterm expansion of Y (decimal form). 3. Write a Maxterm expansion of X (decimal form!). 4. Write a Maxterm expansion of Y (decimal form). Use the editor to format your answer
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