The weights of a certain brand of candies are normally distributed with a mean weight of 0.8546 g and a standard deviation of 0.0517 g. A sample of these candies came from a package containing 465 candies, and the package label stated that 396.8 the net weight is 396.8 g. (If every package has 465 candies, the mean weight of the candies must exceed =0.8533 g for the net contents to weigh at least 396.8 g.) 465 a. If 1 candy is randomly selected, find the probability that it weighs more than 0.8533 g. The probability is (Round to four decimal places as needed.)

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The weights of a certain brand of candies are normally distributed with a mean weight of 0.8546 g and a standard deviation of 0.0517 g. A sample of these candies came from a package containing 465 candies, and the package label stated that
396.8
the net weight is 396.8 g. (If every package has 465 candies, the mean weight of the candies must exceed
=0.8533 g for the net contents to weigh at least 396.8 g.)
465
a. If 1 candy is randomly selected, find the probability that it weighs more than 0.8533 g.
The probability is
(Round to four decimal places as needed.)
Transcribed Image Text:The weights of a certain brand of candies are normally distributed with a mean weight of 0.8546 g and a standard deviation of 0.0517 g. A sample of these candies came from a package containing 465 candies, and the package label stated that 396.8 the net weight is 396.8 g. (If every package has 465 candies, the mean weight of the candies must exceed =0.8533 g for the net contents to weigh at least 396.8 g.) 465 a. If 1 candy is randomly selected, find the probability that it weighs more than 0.8533 g. The probability is (Round to four decimal places as needed.)
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