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1000 1001 1010 1011 1100 1101 1110 1111 a. Derive Ki. the first-round subkey h. Derive Lo. Ro function of Table S1 d. Calculate A-ElRJ?k,

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1000 1001 1010 1011 1100 1101 1110 1111 a. Derive Ki. the first-round subkey h. Derive Lo. Ro function of Table S1 d. Calculate A-ElRJ?k, e. Group the 48-bit result of (d) into sets of 6 bits and evaluate the co S-box substitutions t. Concatenate the results of (e) to get a 32-bit result, B Apply the permutation to get P(B) Calculate Ri -P(B)L L Write down the ciphertext. The given plain text (in hexadecimal orm),P- D2AAFS9ICEOB6587 Key, K B0194 D2FA3487EC6 First convert both P and K in binary form using 64 bits (each hex digit by 4 digit binary number as shown). Then answer each of the question given above. 1000 1001 1010 1011 1100 1101 1110 1111 a. Derive Ki. the first-round subkey h. Derive Lo. Ro function of Table S1 d. Calculate A-ElRJ?k, e. Group the 48-bit result of (d) into sets of 6 bits and evaluate the co S-box substitutions t. Concatenate the results of (e) to get a 32-bit result, B Apply the permutation to get P(B) Calculate Ri -P(B)L L Write down the ciphertext. The given plain text (in hexadecimal orm),P- D2AAFS9ICEOB6587 Key, K B0194 D2FA3487EC6 First convert both P and K in binary form using 64 bits (each hex digit by 4 digit binary number as shown). Then answer each of the question given above

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