A person's blood glucose level and diabetes are closely related. Let x be a random variable measured in milligrams of glucose per deciliter (1/10 of a liter) of blood. Suppose that after a 12-hour...


A person's blood glucose level and diabetes are closely related. Let
x
be a random variable measured in milligrams of glucose per deciliter (1/10 of a liter) of blood. Suppose that after a 12-hour fast, the random variable
x
will have a distribution that is approximately normal with mean ? = 87 and standard deviation ? = 22.
Note:
After 50 years of age, both the mean and standard deviation tend to increase. For an adult (under 50) after a 12-hour fast, find the following probabilities. (Round your answers to four decimal places.)


(d)
x
is greater than 125 (borderline diabetes starts at 125)


A person's blood glucose level and diabetes are closely related. Let x be a random variable measured in milligrams of glucose per deciliter (1/10 of a liter) of blood. Suppose that after a 12-hour fast, the random variable x<br>will have a distribution that is approximately normal with mean u = 87 and standard deviation o = 22. Note: After 50 years of age, both the mean and standard deviation tend to increase. For an adult (under 50) after a<br>12-hour fast, find the following probabilities. (Round your answers to four decimal places.)<br>

Extracted text: A person's blood glucose level and diabetes are closely related. Let x be a random variable measured in milligrams of glucose per deciliter (1/10 of a liter) of blood. Suppose that after a 12-hour fast, the random variable x will have a distribution that is approximately normal with mean u = 87 and standard deviation o = 22. Note: After 50 years of age, both the mean and standard deviation tend to increase. For an adult (under 50) after a 12-hour fast, find the following probabilities. (Round your answers to four decimal places.)

Jun 11, 2022
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