2.35% 13.5% 34% 34% 13.5%235% -30 - 2e e Ate +2o + 30 95% (a) in 36 to 40 days (b) in 37 to 39 days (c) in 38 days or fewer (d) in 35 to 41 days Step 1 (a) in 36 to 40 days We are given that the incubation time is normally distributed with a mean of 38 days and standard deviation of 1 day. Therefore, and e We wish to determine how many of the 10,000 eggs can be expected to hatch in 36 to 40 days. Since standard deviations to the left of the mean. Similarly, 40 days is 38-36- 2, 36 days is located located standard deviations to the right of the mean.

MATLAB: An Introduction with Applications
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Author:Amos Gilat
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2.35%
13.5%
34%
34%
13.5%
2.35%
- 30 -20
A+ 20 +3
(a) in 36 to 40 days
(b) in 37 to 39 days
(c) in 38 days or fewer
(d) in 35 to 41 days
Step 1
(a) in 36 to 40 days
We are given that the incubation time is normally distributed with a mean of 38 days and standard deviation
of 1 day. Therefore,
and o
We wish to determine how many of the 10,000 eggs can be expected to hatch in 36 to 40 days. Since
38-36 2, 36 days is located
standard deviations to the left of the mean. Similarly, 40 days is
located
standard deviations to the right of the mean.
Transcribed Image Text:2.35% 13.5% 34% 34% 13.5% 2.35% - 30 -20 A+ 20 +3 (a) in 36 to 40 days (b) in 37 to 39 days (c) in 38 days or fewer (d) in 35 to 41 days Step 1 (a) in 36 to 40 days We are given that the incubation time is normally distributed with a mean of 38 days and standard deviation of 1 day. Therefore, and o We wish to determine how many of the 10,000 eggs can be expected to hatch in 36 to 40 days. Since 38-36 2, 36 days is located standard deviations to the left of the mean. Similarly, 40 days is located standard deviations to the right of the mean.
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