The number of hot dogs eaten in 10 minutes in the annual Nathan's hot dog eating contest can be approximated by a Normal distribution as shown in the image. 24 30 48 54 36 42 Number of hot dogs 60 What is the mean and standard deviation of this distribution? Mean = 6 hot dogs eaten in 10 minutes Standard deviation = 42 hot dogs Mean = 60 hot dogs eaten in 10 minutes Standard deviation = 36 hot dogs Mean = 42 hot dogs eaten in 10 minutes Standard deviation = 12 hot dogs Mean = 42 hot dogs eaten in 10 minutes Standard deviation = 6 hot dogs Mean = 24 hot dogs eaten in 10 minutes Standard deviation = 6 hot dogs

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The number of hot dogs eaten in 10 minutes in the annual Nathan's hot dog eating contest can be approximated by a Normal
distribution as shown in the image.
24
30
36
48
Number of hot dogs
54
What is the mean and standard deviation of this
distribution?
Mean = 6 hot dogs eaten in 10 minutes Standard
deviation 42 hot dogs
Mean = 60 hot dogs eaten in 10 minutes Standard
deviation =
36 hot dogs
Mean = 42 hot dogs eaten in 10 minutes Standard
deviation =
12 hot dogs
Mean = 42 hot dogs eaten in 10 minutes Standard
deviation = 6 hot dogs
24 hot dogs eaten in 10 minutes Standard
6 hot dogs
Mean =
deviation
Transcribed Image Text:The number of hot dogs eaten in 10 minutes in the annual Nathan's hot dog eating contest can be approximated by a Normal distribution as shown in the image. 24 30 36 48 Number of hot dogs 54 What is the mean and standard deviation of this distribution? Mean = 6 hot dogs eaten in 10 minutes Standard deviation 42 hot dogs Mean = 60 hot dogs eaten in 10 minutes Standard deviation = 36 hot dogs Mean = 42 hot dogs eaten in 10 minutes Standard deviation = 12 hot dogs Mean = 42 hot dogs eaten in 10 minutes Standard deviation = 6 hot dogs 24 hot dogs eaten in 10 minutes Standard 6 hot dogs Mean = deviation
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