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The answer is this one. Here is why. The signature is t^dB mod nB and this was t. Thatamp;#39;s what this is. We can use the property of exponents to simplify this. And now distributing the exponents, we get this. Here we have this term k^eBdB. Well, these are RSA keys--this is the public and the private key for that modulus. That is the equivalent to what happens when we do encryption and decryption. This is equivalent to k because these exponents end up performing encryption and decryption in the RSA system. Theyamp;#39;re designed so thatamp;#39;s equivalent to 1, and so we get m^dB times k mod nB, while this value k--that was the the random value selected by Alice. She can just divide that out, and by dividing out the k, she gets m^dB mod mB, which is exactly what she wanted--thatamp;#39;s the message m signed by the bank.