An engineer is going to redesign an ejection seat for an airplane. The seat was designed for pilots weighing between 130 lb and 191 lb. The new population of pilots has normally distributed weights with a mean of 138 lb and a standard deviation of 29.9 lb. a. If a pilot is randomly selected, find the probability that his weight is between 130 lb and 191 lb. The probability is approximately 0.56730.5673. (Round to four decimal places as needed.) b. If 33 different pilots are randomly selected, find the probability that their mean weight is between 130 lb and 191 lb. The probability is approximately 0.93790.9379. (Round to four decimal places as needed.) c. When redesigning the ejection seat, which probability is more relevant? A. Part (b) because the seat performance for a single pilot is more important. B. Part (a) because the seat performance for a sample of pilots is more important. C. Part (b) because the seat performance for a sample of pilots is more important. D. Part (a) because the seat performance for a single pilot is more important.
An engineer is going to redesign an ejection seat for an airplane. The seat was designed for pilots weighing between 130 lb and 191 lb. The new population of pilots has normally distributed weights with a mean of 138 lb and a standard deviation of 29.9 lb. a. If a pilot is randomly selected, find the probability that his weight is between 130 lb and 191 lb. The probability is approximately 0.56730.5673. (Round to four decimal places as needed.) b. If 33 different pilots are randomly selected, find the probability that their mean weight is between 130 lb and 191 lb. The probability is approximately 0.93790.9379. (Round to four decimal places as needed.) c. When redesigning the ejection seat, which probability is more relevant? A. Part (b) because the seat performance for a single pilot is more important. B. Part (a) because the seat performance for a sample of pilots is more important. C. Part (b) because the seat performance for a sample of pilots is more important. D. Part (a) because the seat performance for a single pilot is more important.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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Problem 1P
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An engineer is going to redesign an ejection seat for an airplane. The seat was designed for pilots weighing between
normally distributed weights with a mean of
130
lb and
191
lb. The new population of pilots has 138 lb
and a standard deviation of
29.9 lb.
a. If a pilot is randomly selected, find the probability that his weight is between
130
lb and
191
lb.The probability is approximately
0.56730.5673.
(Round to four decimal places as needed.)b. If
33
different pilots are randomly selected, find the probability that their mean weight is between
130
lb and
191
lb.The probability is approximately
0.93790.9379.
(Round to four decimal places as needed.)c. When redesigning the ejection seat, which probability is more relevant?
Part (b) because the seat performance for a single pilot is more important.
Part (a) because the seat performance for a sample of pilots is more important.
Part (b) because the seat performance for a sample of pilots is more important.
Part (a) because the seat performance for a single pilot is more important.
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