9. The mean volume of a can of Super Soda is 12 ounces, with a standard deviation of 0.6 ounces. The volumes of all cans of Super Soda are normally distributed. (b) For a random sample of 36 cans, what percent of cans of Super soda contains more than 12.1 ounces? Hint: Do not forget to calculate sd%3Da/sqrt(n) for a given sample of 36 cans of soda first. 2.5% O 68% O 95% 16%

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**Question 9: Statistical Analysis of Super Soda Cans**

(a) The mean volume of a can of Super Soda is 12 ounces, with a standard deviation of 0.6 ounces. The volumes of all cans of Super Soda are normally distributed.

(b) For a random sample of 36 cans, what percent of cans of Super Soda contain more than 12.1 ounces?

**Hint:** Do not forget to calculate the standard deviation for the sample using the formula:  
\[ \text{sd} = \frac{\sigma}{\sqrt{n}} \]  
where \(\sigma\) is the population standard deviation and \(n\) is the sample size.

**Options:**
- 2.5%
- 68%
- 95%
- 16%
Transcribed Image Text:**Question 9: Statistical Analysis of Super Soda Cans** (a) The mean volume of a can of Super Soda is 12 ounces, with a standard deviation of 0.6 ounces. The volumes of all cans of Super Soda are normally distributed. (b) For a random sample of 36 cans, what percent of cans of Super Soda contain more than 12.1 ounces? **Hint:** Do not forget to calculate the standard deviation for the sample using the formula: \[ \text{sd} = \frac{\sigma}{\sqrt{n}} \] where \(\sigma\) is the population standard deviation and \(n\) is the sample size. **Options:** - 2.5% - 68% - 95% - 16%
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