The most common injury that occurs among mountain climbers is trauma to the lower extremity (leg). Consequently, rescuers must be proficient in immobilizing and splinting of fractures. The researchers examined the likelihood of needing certain types of splints. A Mountain Rescue study reported that there were 6 shaft splints needed among 340 live casualties. The researchers will use this study below. estimate the proportion of all mountain casualties that require a femoral shaft splint. Complete parts a and b a. Is the sample large enough to apply the large-sample estimation method of this section? Show why or why not. O A. It is inappropriate because the number of failures in the sample is less than 15. O B. It is inappropriate because the number of failures in the sample is greater than 15. O C. It is inappropriate because the number of successes in the sample is less than 15. O D. It is inappropriate because the number of successes in the sample is greater than 15. b. Use Wilson's adjustment to find a 95% confidence interval for the true proportion of all mountain casualties that require a femoral shaft splint. Interpret the result. The 95% confidence interval is (O). (Round to three decimal places as needed.) Interpret the result. Choose the correct answer below. O A. One can be 95% confident that the interval contains the true population proportion of all mountain casualties that require a femoral shaft splint. O B. One can be 5% confident that the interval contains the sample population proportion of all mountain casualties that require a femoral shaft splint. OC. One can be 95% confident that the interval contains the sample population proportion of all mountain casualties that require a femoral shaft splint. O D. One can be 5% confident that the interval contains the true population proportion of all mountain casualties that require a femoral shaft splint.
The most common injury that occurs among mountain climbers is trauma to the lower extremity (leg). Consequently, rescuers must be proficient in immobilizing and splinting of fractures. The researchers examined the likelihood of needing certain types of splints. A Mountain Rescue study reported that there were 6 shaft splints needed among 340 live casualties. The researchers will use this study below. estimate the proportion of all mountain casualties that require a femoral shaft splint. Complete parts a and b a. Is the sample large enough to apply the large-sample estimation method of this section? Show why or why not. O A. It is inappropriate because the number of failures in the sample is less than 15. O B. It is inappropriate because the number of failures in the sample is greater than 15. O C. It is inappropriate because the number of successes in the sample is less than 15. O D. It is inappropriate because the number of successes in the sample is greater than 15. b. Use Wilson's adjustment to find a 95% confidence interval for the true proportion of all mountain casualties that require a femoral shaft splint. Interpret the result. The 95% confidence interval is (O). (Round to three decimal places as needed.) Interpret the result. Choose the correct answer below. O A. One can be 95% confident that the interval contains the true population proportion of all mountain casualties that require a femoral shaft splint. O B. One can be 5% confident that the interval contains the sample population proportion of all mountain casualties that require a femoral shaft splint. OC. One can be 95% confident that the interval contains the sample population proportion of all mountain casualties that require a femoral shaft splint. O D. One can be 5% confident that the interval contains the true population proportion of all mountain casualties that require a femoral shaft splint.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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