4. The librarian at the local elementary school claims that, on average, the books in the library are more than 20 years old. To test this claim, a student takes a sample of n = 30 books and records the publica- tion date for each. The sample produces an average age of M = 23.8 years with a variance of s2 = 67.5. Use this sample to conduct a one-tailed test with a .01 to determine whether the average age of the library books is significantly greater than 20 years (u > 20). %3D

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### Statistical Analysis of Library Book Ages

**Problem Statement:**

A librarian at the local elementary school claims that, on average, the books in the library are more than 20 years old. To verify this claim, a student randomly selects a sample of 30 books and records their publication dates.

**Sample Data:**

- Sample size (\(n\)): 30 books
- Mean age of books (\(M\)): 23.8 years
- Variance (\(s^2\)): 67.5

**Objective:**

Conduct a one-tailed hypothesis test at a significance level (\(\alpha\)) of 0.01 to determine if the average age of the library books is significantly greater than 20 years (\(\mu > 20\)).

---

This example illustrates the use of hypothesis testing in statistics to evaluate claims based on sample data.
Transcribed Image Text:### Statistical Analysis of Library Book Ages **Problem Statement:** A librarian at the local elementary school claims that, on average, the books in the library are more than 20 years old. To verify this claim, a student randomly selects a sample of 30 books and records their publication dates. **Sample Data:** - Sample size (\(n\)): 30 books - Mean age of books (\(M\)): 23.8 years - Variance (\(s^2\)): 67.5 **Objective:** Conduct a one-tailed hypothesis test at a significance level (\(\alpha\)) of 0.01 to determine if the average age of the library books is significantly greater than 20 years (\(\mu > 20\)). --- This example illustrates the use of hypothesis testing in statistics to evaluate claims based on sample data.
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