b) i) If we lose 0 packets out of 10,000 arrivals to a queueing system in a simulation, what do we estimate to be the loss probability (LP), and the upper and lower confidence intervals at a 95% confidence? Use the Wilson Score interval. ii) What do Confidence Intervals tell us? iii) If we have 90% CI's and the first 8 experiments yield values within the CI's while the 9th experiment is outside, what do we predict about the result(s) of the 10th experiment? iv) If we didn't use Confidence Intervals what would be the effect on using simulation to study complex systems in engineering and computer science?

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b) i) If we lose 0 packets out of 10,000 arrivals to a queueing system in a simulation, what
do we estimate to be the loss probability (LP), and the upper and lower confidence
intervals at a 95% confidence? Use the Wilson Score interval.
ii) What do Confidence Intervals tell us?
iii) If we have 90% CI's and the first 8 experiments yield values within the CI's while the 9th
experiment is outside, what do we predict about the result(s) of the 10th experiment?
iv) If we didn't use Confidence Intervals what would be the effect on using simulation to
study complex systems in engineering and computer science?
Transcribed Image Text:b) i) If we lose 0 packets out of 10,000 arrivals to a queueing system in a simulation, what do we estimate to be the loss probability (LP), and the upper and lower confidence intervals at a 95% confidence? Use the Wilson Score interval. ii) What do Confidence Intervals tell us? iii) If we have 90% CI's and the first 8 experiments yield values within the CI's while the 9th experiment is outside, what do we predict about the result(s) of the 10th experiment? iv) If we didn't use Confidence Intervals what would be the effect on using simulation to study complex systems in engineering and computer science?
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