3. The average noontime temperature in a certain location is normally distributed with a mean of 32 degrees Celsius and a standard deviation of 1.3 degrees Celsius. a. b. C. Celsius. Calculate the probability that the noontime temperature is exactly 32 degrees Celsius. Calculate the probability that the noontime temperature is greater than 33 degrees Above what noontime temperature are experienced in 20% of the days. 3

Calculus For The Life Sciences
2nd Edition
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Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
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Chapter13: Probability And Calculus
Section13.3: Special Probability Density Functions
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3. The average noontime temperature in a certain location is normally distributed with a mean of 32 degrees
Celsius and a standard deviation of 1.3 degrees Celsius.
a.
b.
C.
Celsius.
Calculate the probability that the noontime temperature is exactly 32 degrees Celsius.
Calculate the probability that the noontime temperature is greater than 33 degrees
Above what noontime temperature are experienced in 20% of the days.
3
Transcribed Image Text:3. The average noontime temperature in a certain location is normally distributed with a mean of 32 degrees Celsius and a standard deviation of 1.3 degrees Celsius. a. b. C. Celsius. Calculate the probability that the noontime temperature is exactly 32 degrees Celsius. Calculate the probability that the noontime temperature is greater than 33 degrees Above what noontime temperature are experienced in 20% of the days. 3
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