In a study of 420,071 cell phone users, 103 subjects developed cancer of the brain or nervous system. Test the claim of a somewhat common belief that such cancers are affected by cell phone use. That is, test the claim that cell phone users develop cancer of the brain or nervous system at a rate that is different from the rate of 0.0340% for people who do not use cell phones. Because this issue has such great importance, use a 0.001 significance level Identify the null hypothesis, alternative hypothesis, test statistic, P-value, conclusion about the null hypothesis, and final conclusion that addresses the original claim. Use the P-value method and the normal distribution as an approximation to the binomial distribution. Which of the following is the hypothesis test to be conducted? O A. Ho p=0.00034 H, p<0.00034 O B. Ho p#0.00034 H, p=0.00034 O C. Ho p=0.00034 D. Ho: p= 0.00034 H p#0.00034 H, p>0.00034 OE. Ho p<0.00034 OF. Ho p>0.00034 H,: p=0.00034 H p=0.00034 What is the test statistic? (Round to two decimal places as needed)

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In a study of 420,071 cell phone users, 103 subjects developed cancer of the brain or nervous system. Test the claim of a somewhat common belief that such cancers are affected by cell phone use. That is, test the claim that cell phone users develop cancer of the brain or nervous system at a rate that is different from the rate of 0.0340% for people who do not use cell phones. Because this issue has such great importance, use a 0.001 significance level. Identify the null hypothesis, alternative hypothesis, test statistic, P-value, conclusion about the null hypothesis, and final conclusion that addresses the original claim. Use the P-value method and the normal distribution as an approximation to the binomial distribution.

**Which of the following is the hypothesis test to be conducted?**

A. \( H_0: p = 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p < 0.00034 \)

B. \( H_0: p \neq 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \)

C. \( H_0: p = 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p \neq 0.00034 \)

D. \( H_0: p = 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p > 0.00034 \)

E. \( H_0: p < 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \)

F. \( H_0: p > 0.00034 \)  
&nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \)

**What is the test statistic?**

z = [ ]

*Round to two decimal places as needed.*
Transcribed Image Text:In a study of 420,071 cell phone users, 103 subjects developed cancer of the brain or nervous system. Test the claim of a somewhat common belief that such cancers are affected by cell phone use. That is, test the claim that cell phone users develop cancer of the brain or nervous system at a rate that is different from the rate of 0.0340% for people who do not use cell phones. Because this issue has such great importance, use a 0.001 significance level. Identify the null hypothesis, alternative hypothesis, test statistic, P-value, conclusion about the null hypothesis, and final conclusion that addresses the original claim. Use the P-value method and the normal distribution as an approximation to the binomial distribution. **Which of the following is the hypothesis test to be conducted?** A. \( H_0: p = 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p < 0.00034 \) B. \( H_0: p \neq 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \) C. \( H_0: p = 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p \neq 0.00034 \) D. \( H_0: p = 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p > 0.00034 \) E. \( H_0: p < 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \) F. \( H_0: p > 0.00034 \) &nbsp;&nbsp;&nbsp;&nbsp;\( H_1: p = 0.00034 \) **What is the test statistic?** z = [ ] *Round to two decimal places as needed.*
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