The average number of miles (in thousands) that a car's tire will function before needing replacement is 73 and the standard deviation is 10. Suppose that 47 randomly selected tires are tested. Round all answers to 4 decimal places where possible and assume a normal distribution. a. What is the distribution of X? X - N( 73 10 b. What is the distribution of ? ¤ - N( c. If a randomly selected individual tire is tested, find the probability that the number of miles (in thousands) before it will need replacement is between 74.8 and 75.7. d. For the 47 tires tested, find the probability that the average miles (in thousands) before need of replacement is between 74.8 and 75.7. e. For part d), is the assumption that the distribution is normal necessary?O No Yes o

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Please answer section B, C, and D. 

The average number of miles (in thousands) that a car's tire will function before needing replacement is 73, and the standard deviation is 10. Suppose that 47 randomly selected tires are tested. Round all answers to 4 decimal places where possible and assume a normal distribution.

**a. What is the distribution of \(X\)?**  
\[ X \sim N(73, 10) \]

**b. What is the distribution of \(\bar{x}\)?**  
\[ \bar{x} \sim N\left(73, \frac{10}{\sqrt{47}}\right) \]

**c. If a randomly selected individual tire is tested, find the probability that the number of miles (in thousands) before it will need replacement is between 74.8 and 75.7.**  
[Answer Box]

**d. For the 47 tires tested, find the probability that the average miles (in thousands) before need of replacement is between 74.8 and 75.7.**  
[Answer Box]

**e. For part d), is the assumption that the distribution is normal necessary?**  
[Yes] [No]
Transcribed Image Text:The average number of miles (in thousands) that a car's tire will function before needing replacement is 73, and the standard deviation is 10. Suppose that 47 randomly selected tires are tested. Round all answers to 4 decimal places where possible and assume a normal distribution. **a. What is the distribution of \(X\)?** \[ X \sim N(73, 10) \] **b. What is the distribution of \(\bar{x}\)?** \[ \bar{x} \sim N\left(73, \frac{10}{\sqrt{47}}\right) \] **c. If a randomly selected individual tire is tested, find the probability that the number of miles (in thousands) before it will need replacement is between 74.8 and 75.7.** [Answer Box] **d. For the 47 tires tested, find the probability that the average miles (in thousands) before need of replacement is between 74.8 and 75.7.** [Answer Box] **e. For part d), is the assumption that the distribution is normal necessary?** [Yes] [No]
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