= 30 The testing times for a group of college students were normally distributed with a mean of μ minutes and a standard deviation of o = 4.7 minutes. The bell curve below represents the distribution for testing times. The scale on the horizontal axis is equal to the standard deviation. Fill in the indicated boxes. μ-30 μ-20 μ-²0 μ μ+O 95% of testing times were between Used the Empirical Rule to complete the following statements: 68% of testing times were between 99.7% of testing times were between μ = 30 σ = 4.7 50% of testing times were below μ+2σ μ+30 minutes and minutes and minutes and minutes. minutes. minutes. minutes.

MATLAB: An Introduction with Applications
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Author:Amos Gilat
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Chapter1: Starting With Matlab
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The testing times for a group of college students were normally distributed with a mean of μ = 30
minutes and a standard deviation of o = 4.7 minutes.
The bell curve below represents the distribution for testing times. The scale on the horizontal axis
is equal to the standard deviation.
Fill in the indicated boxes.
H-30
μ-20 H-O
P μ+o μ+2σ μ+30
95% of testing times were between
μl
30
o = 4.7
99.7% of testing times were between
=
Used the Empirical Rule to complete the following statements:
68% of testing times were between
50% of testing times were below
minutes and
minutes and
+
minutes and
minutes.
minutes.
minutes.
minutes.
Transcribed Image Text:The testing times for a group of college students were normally distributed with a mean of μ = 30 minutes and a standard deviation of o = 4.7 minutes. The bell curve below represents the distribution for testing times. The scale on the horizontal axis is equal to the standard deviation. Fill in the indicated boxes. H-30 μ-20 H-O P μ+o μ+2σ μ+30 95% of testing times were between μl 30 o = 4.7 99.7% of testing times were between = Used the Empirical Rule to complete the following statements: 68% of testing times were between 50% of testing times were below minutes and minutes and + minutes and minutes. minutes. minutes. minutes.
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