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Please Help! 6. Every hour the worm X spreads from each infected computer to one previously uninfected computers In answering these questions you should explain

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6. Every hour the worm X spreads from each infected computer to one previously uninfected computers In answering these questions you should explain how you determined your answers (a) Give a table showing the number of infected computers at each hour across a 24 hour period (b) By time t = 6.5 a counter worm W has been developed and it is deployed on one infected At time t = 0 the number of X infected computers is N = 1. computer. W removes malware X from any host W is on. The counter worm W spreads slightly re quickly than X, with each W spreading to two X infected hosts each hour, rovided such hosts are available Provide another table showing the spread of W and the impact on X across an appropriate time frame, starting from t 0 again. Note the offset in time means that at t = 6.5 the number of X infected computers reduces by 1, so the spread oft-7 will be slightly smaller than before. Overall the number of X infected computers will go up on the hour, and down on the half hour. (c) Graph the two cases against each other, clearly indicating on it where N -0 (d) Assume that at time t = 9. X volves to spread to three uninfected computers each hour. What subsequently happens? 6. Every hour the worm X spreads from each infected computer to one previously uninfected computers In answering these questions you should explain how you determined your answers (a) Give a table showing the number of infected computers at each hour across a 24 hour period (b) By time t = 6.5 a counter worm W has been developed and it is deployed on one infected At time t = 0 the number of X infected computers is N = 1. computer. W removes malware X from any host W is on. The counter worm W spreads slightly re quickly than X, with each W spreading to two X infected hosts each hour, rovided such hosts are available Provide another table showing the spread of W and the impact on X across an appropriate time frame, starting from t 0 again. Note the offset in time means that at t = 6.5 the number of X infected computers reduces by 1, so the spread oft-7 will be slightly smaller than before. Overall the number of X infected computers will go up on the hour, and down on the half hour. (c) Graph the two cases against each other, clearly indicating on it where N -0 (d) Assume that at time t = 9. X volves to spread to three uninfected computers each hour. What subsequently happens

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