A random sample of n, = 10 regions in New England gave the following violent crime rates (per million population). X1: New England Crime Rate 3.3 3.9 4.0 4.1 3.3 4.1 1.8 4.8 2.9 3.1 Another random sample of n2 = 12 regions in the Rocky Mountain states gave the following violent crime rates (per million population). X2: Rocky Mountain Crime Rate 3.7 4.1 4.5 5.1 3.3 4.8 3.5 2.4 3.1 3.5 5.2 2.8 Assume that the crime rate distribution is approximately normal in both regions. (i) Use a calculator to calculate x1, S1, X2, and s2. (Round your answers to three decimal places.) x, = 3.53 S1 = 0.84 X, = 3.83 S2 = 0.91 (ii) Do the data indicate that the violent crime rate in the Rocky Mountain region is higher than in New England? Use a = 0.01. (a) What is the level of significance? 0.01 State the null and alternate hypotheses. Hoifly

Holt Mcdougal Larson Pre-algebra: Student Edition 2012
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ISBN:9780547587776
Author:HOLT MCDOUGAL
Publisher:HOLT MCDOUGAL
Chapter11: Data Analysis And Probability
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A random sample of n, = 10 regions in New England gave the
following violent crime rates (per million population).
X1: New England Crime Rate
3.3 3.9 4.0 4.1 3.3 4.1 1.8 4.8 2.9 3.1
Another random sample of n2 = 12 regions in the Rocky
Mountain states gave the following violent crime rates (per
million population).
X2: Rocky Mountain Crime Rate
3.7 4.1 4.5 5.1 3.3 4.8 3.5 2.4 3.1 3.5 5.2 2.8
Assume that the crime rate distribution is approximately
normal in both regions.
(i) Use a calculator to calculate x1, S1, X2, and s2. (Round
your answers to three decimal places.)
x, = 3.53
S1 = 0.84
X, = 3.83
S2 = 0.91
(ii) Do the data indicate that the violent crime rate in the
Rocky Mountain region is higher than in New England? Use
a = 0.01.
(a) What is the level of significance?
0.01
State the null and alternate hypotheses.
Hoifly <Hz; Hyi fMy = H2
(b) What sampling distribution will you use? What
assumptions are you making?
• The Student's t. We assume that both population distributions are approximately normal with unknown standard deviations.
The standard normal. We assume that both population distributions are approximately normal with known standard
deviations.
The standard normal. We assume that both population distributions are approximately normal with unknown standard
deviations.
The Student's t. We assume that both population distributions are approximately normal with known standard deviations.
What is the value of the sample test statistic? (Test the
difference u1 - µ2. Round your answer to three decimal
places.)
|-0.81
Transcribed Image Text:A random sample of n, = 10 regions in New England gave the following violent crime rates (per million population). X1: New England Crime Rate 3.3 3.9 4.0 4.1 3.3 4.1 1.8 4.8 2.9 3.1 Another random sample of n2 = 12 regions in the Rocky Mountain states gave the following violent crime rates (per million population). X2: Rocky Mountain Crime Rate 3.7 4.1 4.5 5.1 3.3 4.8 3.5 2.4 3.1 3.5 5.2 2.8 Assume that the crime rate distribution is approximately normal in both regions. (i) Use a calculator to calculate x1, S1, X2, and s2. (Round your answers to three decimal places.) x, = 3.53 S1 = 0.84 X, = 3.83 S2 = 0.91 (ii) Do the data indicate that the violent crime rate in the Rocky Mountain region is higher than in New England? Use a = 0.01. (a) What is the level of significance? 0.01 State the null and alternate hypotheses. Hoifly <Hz; Hyi fMy = H2 (b) What sampling distribution will you use? What assumptions are you making? • The Student's t. We assume that both population distributions are approximately normal with unknown standard deviations. The standard normal. We assume that both population distributions are approximately normal with known standard deviations. The standard normal. We assume that both population distributions are approximately normal with unknown standard deviations. The Student's t. We assume that both population distributions are approximately normal with known standard deviations. What is the value of the sample test statistic? (Test the difference u1 - µ2. Round your answer to three decimal places.) |-0.81
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