The claim is that for 11 AM body temperatures of females, the mean is less than 98.6°F. The sample size is n = 37 and the test statistic is t= -4.458. Use technology to find the P-value. Based on the result, what is the final conclusion? Use a significance level of 0.01. State the null and alternative hypotheses. Hot = 98.6 H,:μ < 98.6 (Type integers or decimals. Do not round. Do not include the degree symbol in your answer.) The test statistic is -4.46. (Round to two decimal places as needed.) The P-value is (Round to three decimal places as needed.)
The claim is that for 11 AM body temperatures of females, the mean is less than 98.6°F. The sample size is n = 37 and the test statistic is t= -4.458. Use technology to find the P-value. Based on the result, what is the final conclusion? Use a significance level of 0.01. State the null and alternative hypotheses. Hot = 98.6 H,:μ < 98.6 (Type integers or decimals. Do not round. Do not include the degree symbol in your answer.) The test statistic is -4.46. (Round to two decimal places as needed.) The P-value is (Round to three decimal places as needed.)
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
Related questions
Question
![A data set includes weights (in grams) of 32 Reese's Peanut Butter Cup Miniatures. The accompanying Statdisk display shows results from using all 32 weights to test the claim that the sample is from a population with a mean equal to 8.953 g. Test the given claim by using the display provided from Statdisk. Use a 0.01 significance level.
### Click the icon to view the Statdisk display.
---
### Identify the null and alternative hypotheses.
**Null Hypothesis (H₀):**
\[ \mu = 8.953 \]
**Alternative Hypothesis (H₁):**
\[ \mu \neq 8.953 \]
*(Type integers or decimals. Do not round.)*
### Identify the test statistic.
*(Round to two decimal places as needed.)*
\[ \boxed{\phantom{00}} \]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F793c8e2d-e8ae-43e6-85fb-b1622cc5ca2a%2F199b17bc-6b34-4a66-a97e-b68696ab6877%2F5mjocr_processed.png&w=3840&q=75)
Transcribed Image Text:A data set includes weights (in grams) of 32 Reese's Peanut Butter Cup Miniatures. The accompanying Statdisk display shows results from using all 32 weights to test the claim that the sample is from a population with a mean equal to 8.953 g. Test the given claim by using the display provided from Statdisk. Use a 0.01 significance level.
### Click the icon to view the Statdisk display.
---
### Identify the null and alternative hypotheses.
**Null Hypothesis (H₀):**
\[ \mu = 8.953 \]
**Alternative Hypothesis (H₁):**
\[ \mu \neq 8.953 \]
*(Type integers or decimals. Do not round.)*
### Identify the test statistic.
*(Round to two decimal places as needed.)*
\[ \boxed{\phantom{00}} \]
![**Hypothesis Testing for Body Temperature**
The claim is that for 11 AM body temperatures of females, the mean is less than 98.6°F. The sample size is \( n = 37 \) and the test statistic is \( t = -4.458 \). Use technology to find the P-value. Based on the result, what is the final conclusion? Use a significance level of 0.01.
---
**State the null and alternative hypotheses.**
- \( H_0: \mu = 98.6 \)
- \( H_1: \mu < 98.6 \)
**The test statistic is** \( -4.46 \).
(Round to two decimal places as needed.)
**The P-value is** \[ \_\_\_ \].
(Round to three decimal places as needed.)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F793c8e2d-e8ae-43e6-85fb-b1622cc5ca2a%2F199b17bc-6b34-4a66-a97e-b68696ab6877%2Fcvujq3v_processed.png&w=3840&q=75)
Transcribed Image Text:**Hypothesis Testing for Body Temperature**
The claim is that for 11 AM body temperatures of females, the mean is less than 98.6°F. The sample size is \( n = 37 \) and the test statistic is \( t = -4.458 \). Use technology to find the P-value. Based on the result, what is the final conclusion? Use a significance level of 0.01.
---
**State the null and alternative hypotheses.**
- \( H_0: \mu = 98.6 \)
- \( H_1: \mu < 98.6 \)
**The test statistic is** \( -4.46 \).
(Round to two decimal places as needed.)
**The P-value is** \[ \_\_\_ \].
(Round to three decimal places as needed.)
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