the appropriate null and alternative hypotheses to assess whether women are taller today. pose the P-value for this test is 0.12. Explain what this value represents. a conclusion for this hypothesis test assuming an a=0.10 level of significance. te the appropriate null and alternative hypotheses to assess whether women are taller today. Ho: H=64.3 in. versus H₁: μ<64.3 in. Ho: H=63.7 in. versus H₁: > 63.7 in. Ho: H=63.7 in. versus H₁: μ<63.7 in. uppose the P-value for this test is 0.12. Explain what this value represents. OB. Ho: H=63.7 in. versus H₁: μ#63.7 in. O D. OF. Ho: H=64.3 in. versus H₁: μ> 64.3 in. Ho: H=64.3 in. versus H₁: μ#64.3 in. .There is a 0.12 probability of obtaining a sample mean height of exactly 64.3 inches from a population whose mean height is 63.7 inches. There is a 0.12 probability of obtaining a sample mean height of 64.3 inches or shorter from a population whose mean height is 63.7 inches. C. There is a 0.12 probability of obtaining a sample mean height of 64.3 inches or taller from a population whose mean height is 63.7 inches. D. There is a 0.12 probability of obtaining a sample mean height of 63.7 inches or taller from a population whose mean height is 64.3 inches. Write a conclusion for this hypothesis test assuming an a=0.10 level of significance. A. Do not reject the null hypothesis. There is sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. B. Reject the null hypothesis. There is sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. C. Do not reject the null hypothesis. There is not sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. D. Reject the null hypothesis. There is not sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today.
the appropriate null and alternative hypotheses to assess whether women are taller today. pose the P-value for this test is 0.12. Explain what this value represents. a conclusion for this hypothesis test assuming an a=0.10 level of significance. te the appropriate null and alternative hypotheses to assess whether women are taller today. Ho: H=64.3 in. versus H₁: μ<64.3 in. Ho: H=63.7 in. versus H₁: > 63.7 in. Ho: H=63.7 in. versus H₁: μ<63.7 in. uppose the P-value for this test is 0.12. Explain what this value represents. OB. Ho: H=63.7 in. versus H₁: μ#63.7 in. O D. OF. Ho: H=64.3 in. versus H₁: μ> 64.3 in. Ho: H=64.3 in. versus H₁: μ#64.3 in. .There is a 0.12 probability of obtaining a sample mean height of exactly 64.3 inches from a population whose mean height is 63.7 inches. There is a 0.12 probability of obtaining a sample mean height of 64.3 inches or shorter from a population whose mean height is 63.7 inches. C. There is a 0.12 probability of obtaining a sample mean height of 64.3 inches or taller from a population whose mean height is 63.7 inches. D. There is a 0.12 probability of obtaining a sample mean height of 63.7 inches or taller from a population whose mean height is 64.3 inches. Write a conclusion for this hypothesis test assuming an a=0.10 level of significance. A. Do not reject the null hypothesis. There is sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. B. Reject the null hypothesis. There is sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. C. Do not reject the null hypothesis. There is not sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today. D. Reject the null hypothesis. There is not sufficient evidence to conclude that the mean height of women 20 years of age or older is greater today.
Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter13: Probability And Calculus
Section13.2: Expected Value And Variance Of Continuous Random Variables
Problem 10E
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