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[6] Consider the following exponential averaging formula used to predict the length of the CPU burst time for the next process under the SJF scheduling
[6] Consider the following exponential averaging formula used to predict the length of the CPU burst time for the next process under the SJF scheduling policy. Given below is an equation expressed in terms of , Tarot, andUse the equation to find the optimal value of for each of the given pairs of values under (i) and (ii) And then, find the two values of next using these two values of . Which Jnext is preferred assuming that the next process's behavior is close to the current one's behavior? [Show each step of your calculations only in the spaces provided. (12 pts) where aus is the predicted next process's burst time, Tuzeax is the current process's burst time is the average burst time of all the past processes, and i) Tsument-20msec and Te = 100 milliseconds ii) Tsmet = 60msec and a-75 milliseconds [6] Consider the following exponential averaging formula used to predict the length of the CPU burst time for the next process under the SJF scheduling policy. Given below is an equation expressed in terms of , Tarot, andUse the equation to find the optimal value of for each of the given pairs of values under (i) and (ii) And then, find the two values of next using these two values of . Which Jnext is preferred assuming that the next process's behavior is close to the current one's behavior? [Show each step of your calculations only in the spaces provided. (12 pts) where aus is the predicted next process's burst time, Tuzeax is the current process's burst time is the average burst time of all the past processes, and i) Tsument-20msec and Te = 100 milliseconds ii) Tsmet = 60msec and a-75 milliseconds
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