Test the claim that the proportion of people who own cats is significantly different than 20% at the 0.01 significance level. The null and alternative hypothesis would be: Ho:= 0.2 Ho:p ≤ 0.2 Ho: ≤ 0.2 H₁:0.2 H₁:p> 0.2 H₁:> 0.2 O O The test is: left-tailed right-tailed two-tailed O Based on a sample of 500 people, 13% owned cats The test statistic is: The p-value is: Based on this we: Ho:p= 0.2 Ho: ≥ 0.2 Ho:p ≥ 0.2 H₁:p # 0.2 H₁: <0.2 H₁ p < 0.2 O O O Fail to reject the null hypothesis O Reject the null hypothesis (to 2 decimals) (to 2 decimals)

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Author:Amos Gilat
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Test the claim that the proportion of people who own cats is significantly different from 20% at the 0.01 significance level.

The null and alternative hypothesis would be:

- \( H_0: p = 0.2 \)
- \( H_1: p \neq 0.2 \) 

The test is:
- [ ] left-tailed
- [ ] right-tailed
- [x] two-tailed

Based on a sample of 500 people, 13% owned cats.

The test statistic is: [______] (to 2 decimals)

The p-value is: [______] (to 2 decimals)

Based on this we:
- [ ] Fail to reject the null hypothesis
- [ ] Reject the null hypothesis
Transcribed Image Text:Test the claim that the proportion of people who own cats is significantly different from 20% at the 0.01 significance level. The null and alternative hypothesis would be: - \( H_0: p = 0.2 \) - \( H_1: p \neq 0.2 \) The test is: - [ ] left-tailed - [ ] right-tailed - [x] two-tailed Based on a sample of 500 people, 13% owned cats. The test statistic is: [______] (to 2 decimals) The p-value is: [______] (to 2 decimals) Based on this we: - [ ] Fail to reject the null hypothesis - [ ] Reject the null hypothesis
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