The weights of a candies are normally distributed, with n = 469 H = 0.8556 g = 0.051 g o (a) If one candy is randomly selected, the mean weight of the candies must exceed 0.8542 g. Find the...


The weights of a candies are normally distributed, with<br>n = 469<br>H = 0.8556 g<br>= 0.051 g<br>o<br>(a) If one candy is randomly selected, the mean weight of the candies must exceed 0.8542 g. Find<br>the probability that it weighs more than 0.8542 g.<br>The probability is<br>(four decimal places.)<br>(b) If 469 candies are randomly selected, find the probability the mean weight at least 0.8542 g.<br>P(X> 0.8542) =<br>%3D<br>al<br>

Extracted text: The weights of a candies are normally distributed, with n = 469 H = 0.8556 g = 0.051 g o (a) If one candy is randomly selected, the mean weight of the candies must exceed 0.8542 g. Find the probability that it weighs more than 0.8542 g. The probability is (four decimal places.) (b) If 469 candies are randomly selected, find the probability the mean weight at least 0.8542 g. P(X> 0.8542) = %3D al

Jun 03, 2022
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