Using the accompanying table of data, blood platelet counts of women have a bell-shaped distribution with a mean of 255.2 and a standard deviation of 65.5. (All units are 1000 cells/ul.) Using Chebyshev's theorem, what is known about the percentage of women with platelet counts that are within 3 standard deviations of the mean? What are the minimum and maximum possible platelet counts that are within 3 standard deviations of the mean? E Click the icon to view the table of platelet counts. Using Chebyshev's theorem, what is known about the percentage of women with platelet counts that are within 3 standard deviations of the mean? At least % of women have platelet counts within 3 standard deviations of the mean. (Round to the nearest integer as needed.)

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Using the accompanying table of data, blood platelet counts of women have a bell-shaped distribution with a mean of 255.2 and a standard deviation of 65.5. (All units are 1000 cells/uL.) Using Chebyshev's theorem, what is
known about the percentage of women with platelet counts that are within 3 standard deviations of the mean? What are the minimum and maximum possible platelet counts that are within 3 standard deviations of the mean?
E Click the icon to view the table of platelet counts.
Using Chebyshev's theorem, what is known about the percentage of women with platelet counts that are within 3 standard deviations of the mean?
At least % of women have platelet counts within 3 standard deviations of the mean.
(Round to the nearest integer as needed.)
Transcribed Image Text:Using the accompanying table of data, blood platelet counts of women have a bell-shaped distribution with a mean of 255.2 and a standard deviation of 65.5. (All units are 1000 cells/uL.) Using Chebyshev's theorem, what is known about the percentage of women with platelet counts that are within 3 standard deviations of the mean? What are the minimum and maximum possible platelet counts that are within 3 standard deviations of the mean? E Click the icon to view the table of platelet counts. Using Chebyshev's theorem, what is known about the percentage of women with platelet counts that are within 3 standard deviations of the mean? At least % of women have platelet counts within 3 standard deviations of the mean. (Round to the nearest integer as needed.)
According 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 0.62°F. Using Chebyshev's theorem, what do we know
about the percentage 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?
At least % of healthy adults have body temperatures within 2 standard deviations of 98.07°F
(Round to the nearest percent as needed.)
Transcribed Image Text:According 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 0.62°F. Using Chebyshev's theorem, what do we know about the percentage 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? 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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Using the thumb rule in Chebyshev's theorem, the proportion of assumed observations, that are claimed to be falling within a given population standard deviation (i.e., the standard deviations of the number of blood platelets in women) of "k" is given by:

    1-1k2

For given k1.

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