Consider the middle 3 digits of your student ID composed of seven digits. Convert it to binary format (each digit is represented by a maximum of 3bits). For example, 5573062 is simplified to 730 and...

Do your best to help me pleaseConsider the middle 3 digits of your student ID composed of seven digits. Convert it to binary<br>format (each digit is represented by a maximum of 3bits). For example, 5573062 is simplified<br>to 730 and then converted to 111 011 000 . Assume now that we want to send your student<br>ID while being able to detect and correct single bit errors.<br>1.1) Using two-dimensional parity check show what will be transmitted codeword using<br>datawords of size 3bits.<br>Using the hamming code show what would be the codeword that corresponds to<br>your simplified binary student ID. Dataword size is 9bits.<br>1.2)<br>Assume that a single bit error occurred and corrupted the 8th bit (numbering starts<br>from 1 and from right). Show that the receiver of such corrupted codeword will be<br>able to correct the error when using the hamming code.<br>1.3)<br>

Extracted text: Consider the middle 3 digits of your student ID composed of seven digits. Convert it to binary format (each digit is represented by a maximum of 3bits). For example, 5573062 is simplified to 730 and then converted to 111 011 000 . Assume now that we want to send your student ID while being able to detect and correct single bit errors. 1.1) Using two-dimensional parity check show what will be transmitted codeword using datawords of size 3bits. Using the hamming code show what would be the codeword that corresponds to your simplified binary student ID. Dataword size is 9bits. 1.2) Assume that a single bit error occurred and corrupted the 8th bit (numbering starts from 1 and from right). Show that the receiver of such corrupted codeword will be able to correct the error when using the hamming code. 1.3)

Jun 04, 2022
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