A data set lists earthquake depths. The summary statistics are n= 500, x =6.76 km, s= 4.33 km. Use a 0.01 significance level to test the claim of a seismologist that these earthquakes are from a population with a mean equal to 6.00. Assume that a simple random sample has been selected. Identify the null and alternative hypotheses, test statistic, P-value, and state the final conclusion that addresses the original claim. What are the null and alternative hypotheses? O A. Ho u 6.00 km O B. Ho u= 6.00 km H,: p= 6.00 km H, p>6.00 km OC. Ho =6.00 km O D. Ho u=6.00 km H, p<6.00 km H, p6.00 km

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A data set lists earthquake depths. The summary statistics are n = 500, x = 6.76 km, s = 4.33 km. Use a 0.01 significance level to test the claim of a seismologist that
these earthquakes are from a population with a mean equal to 6.00. Assume that a simple random sample has been selected. Identify the null and alternative
hypotheses, test statistic, P-value, and state the final conclusion that addresses the original claim
What are the null and alternative hypotheses?
O B. Ho u= 6. 00 km
O A. Ho H 6.00 km
H =6.00 km
H p6.00 km
O C. Ho =6.00 km
H, p<6.00 km
O D. Ho p=6.00 km
H, p+600 km
Transcribed Image Text:A data set lists earthquake depths. The summary statistics are n = 500, x = 6.76 km, s = 4.33 km. Use a 0.01 significance level to test the claim of a seismologist that these earthquakes are from a population with a mean equal to 6.00. Assume that a simple random sample has been selected. Identify the null and alternative hypotheses, test statistic, P-value, and state the final conclusion that addresses the original claim What are the null and alternative hypotheses? O B. Ho u= 6. 00 km O A. Ho H 6.00 km H =6.00 km H p6.00 km O C. Ho =6.00 km H, p<6.00 km O D. Ho p=6.00 km H, p+600 km
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