cording to a random sample taken at 12 A.M., body temperatures of healthy adults have a bell-shaped distribution with a mean of 98.07 F and å standard deviabon of 0.67 Using Chebyshev's theorem, what đo we know about i ercentage of healthy adults with body temperatures that are within 2 standard deviations of the mean? What are the minimum and maximum possible body temperatures that are within 2 standard deviations of the mean? t least % of healthy adults have body temperatures within 2 standard deviations of 98.07 F. Round to the nearest percent as needed.)

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ccording to a random sample taken at 12 A.M., body temperatures of healthy adults have a bell-shaped distribution with a mean of 98.07°F and a standard deviation of 0.67°F. Using Chebyshev's theorem, what do we know about the
ercentage of healthy adults with body temperatures that are within 2 standard deviations of the mean? What are the minimum and maximum possible body temperatures that are within 2 standard deviations of the mean?
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At least % of healthy adults have body temperatures within 2 standard deviations of 98.07°F.
(Round to the nearest percent as needed.)
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Transcribed Image Text:2.44 ccording to a random sample taken at 12 A.M., body temperatures of healthy adults have a bell-shaped distribution with a mean of 98.07°F and a standard deviation of 0.67°F. Using Chebyshev's theorem, what do we know about the ercentage of healthy adults with body temperatures that are within 2 standard deviations of the mean? What are the minimum and maximum possible body temperatures that are within 2 standard deviations of the mean? Question He At least % of healthy adults have body temperatures within 2 standard deviations of 98.07°F. (Round to the nearest percent as needed.) Enter your answer in the answer box and then click Check Answer. Check Answer Clear All parts 2 remaining MacBook Air %23 4 R E
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