You measure 44 textbooks' weights, and find they have a mean weight of 66 ounces. Assume the population standard deviation is 9 ounces. Based on this, construct a 99% confidence interval for the true population mean textbook weight. Give your answers as decimals, to two places

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You measure 44 textbooks' weights, and find they have a mean weight of 66 ounces. Assume the population standard deviation is 9 ounces. Based on this, construct a 99% confidence interval for the true population mean textbook weight.

Give your answers as decimals, to two places

**Text Transcription:**

You measure 44 textbooks' weights, and find they have a mean weight of 66 ounces. Assume the population standard deviation is 9 ounces. Based on this, construct a 99% confidence interval for the true population mean textbook weight.

Give your answers as decimals, to two places.

\( \_\_\_\_\_\_\_\_ < \mu < \_\_\_\_\_\_\_\_ \)

**Explanation:**

The image presents a statistical problem. It requests the construction of a 99% confidence interval for the population mean weight of textbooks, given that 44 textbooks have a mean weight of 66 ounces, and the population standard deviation is 9 ounces. The solution involves calculating the interval within which the true population mean (\(\mu\)) lies, with 99% certainty, using the given data. The answers should be provided to two decimal places in the provided blanks.
Transcribed Image Text:**Text Transcription:** You measure 44 textbooks' weights, and find they have a mean weight of 66 ounces. Assume the population standard deviation is 9 ounces. Based on this, construct a 99% confidence interval for the true population mean textbook weight. Give your answers as decimals, to two places. \( \_\_\_\_\_\_\_\_ < \mu < \_\_\_\_\_\_\_\_ \) **Explanation:** The image presents a statistical problem. It requests the construction of a 99% confidence interval for the population mean weight of textbooks, given that 44 textbooks have a mean weight of 66 ounces, and the population standard deviation is 9 ounces. The solution involves calculating the interval within which the true population mean (\(\mu\)) lies, with 99% certainty, using the given data. The answers should be provided to two decimal places in the provided blanks.
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