is a civil engineer working for the city of Indianapolis on a project to widen some of its downtown streets. One aspect that she has to consider is that, the hot summer months, the noonday temperature of the asphalt on these streets can get extremely hot. For the project, she models these temperatures asphalt using a normal distribution with a mean of 102 °F and a standard deviation of 16 °F. is table or the ALEKS calculator to find the percentage of noonday temperatures of the asphalt less than 90 °F or more than 114 °F according to the For your intermediate computations, use four or more decimal places. Give your final answer to two decimal places (for example 98.23%). % X
is a civil engineer working for the city of Indianapolis on a project to widen some of its downtown streets. One aspect that she has to consider is that, the hot summer months, the noonday temperature of the asphalt on these streets can get extremely hot. For the project, she models these temperatures asphalt using a normal distribution with a mean of 102 °F and a standard deviation of 16 °F. is table or the ALEKS calculator to find the percentage of noonday temperatures of the asphalt less than 90 °F or more than 114 °F according to the For your intermediate computations, use four or more decimal places. Give your final answer to two decimal places (for example 98.23%). % X
Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter10: Statistics
Section: Chapter Questions
Problem 22SGR
Related questions
Question
![Diane is a civil engineer working for the city of Indianapolis on a project to widen some of its downtown streets. One aspect that she has to consider is that,
during the hot summer months, the noonday temperature of the asphalt on these streets can get extremely hot. For the project, she models these temperatures
of the asphalt using a normal distribution with a mean of 102 °F and a standard deviation of 16 °F.
Use this table or the ALEKS calculator to find the percentage of noonday temperatures of the asphalt less than 90 °F or more than 114 °F according to the
model. For your intermediate computations, use four or more decimal places. Give your final answer to two decimal places (for example 98.23%).
0%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0daf8227-2d6c-4283-bb03-bd34d037dfa3%2Fb8ee3338-c06c-41f2-abf4-245a45a2ee43%2Fnccrpzk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Diane is a civil engineer working for the city of Indianapolis on a project to widen some of its downtown streets. One aspect that she has to consider is that,
during the hot summer months, the noonday temperature of the asphalt on these streets can get extremely hot. For the project, she models these temperatures
of the asphalt using a normal distribution with a mean of 102 °F and a standard deviation of 16 °F.
Use this table or the ALEKS calculator to find the percentage of noonday temperatures of the asphalt less than 90 °F or more than 114 °F according to the
model. For your intermediate computations, use four or more decimal places. Give your final answer to two decimal places (for example 98.23%).
0%
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