1. A prototype automotive tire has a design life of 38,500 miles with a standard deviation of 2,500 miles. The manufacturer tests 60 such tires. On the assumption that the actual population mean is 38,500 miles and the actual population standard deviation is 2,500 miles, find the probability that the sample mean will be less than 36,000 miles. Assume that the distribution of lifetimes of such tires is normal. (a) Let X = number of miles on a single tire. Write the question above in terms of this variable X. (b) Using the software tool above, find the probability stated on part (a) (c) Using the software tool above, graph the probability of stated on part (b)

Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter10: Statistics
Section10.5: Comparing Sets Of Data
Problem 13PPS
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1a,b, and c

1. A prototype automotive tire has a design life of 38,500 miles with a standard deviation of 2,500 miles. The
manufacturer tests 60 such tires. On the assumption that the actual population mean is 38,500 miles and the
actual population standard deviation is 2,500 miles, find the probability that the sample mean will be less
than 36,000 miles. Assume that the distribution of lifetimes of such tires is normal.
(a) Let X = number of miles on a single tire. Write the question above in terms of this variable X.
(b) Using the software tool above, find the probability stated on part (a)
(c) Using the software tool above, graph the probability of stated on part (b)
Transcribed Image Text:1. A prototype automotive tire has a design life of 38,500 miles with a standard deviation of 2,500 miles. The manufacturer tests 60 such tires. On the assumption that the actual population mean is 38,500 miles and the actual population standard deviation is 2,500 miles, find the probability that the sample mean will be less than 36,000 miles. Assume that the distribution of lifetimes of such tires is normal. (a) Let X = number of miles on a single tire. Write the question above in terms of this variable X. (b) Using the software tool above, find the probability stated on part (a) (c) Using the software tool above, graph the probability of stated on part (b)
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