A doctor in Cleveland wants to know whether the average life span for heart disease patients a hospitals in the city differ. The data below represents the life span, in years, of heart disease patients from each hospital. Perform an ANOVA test with a 9% level of significance to test wheti the average life span of heart disease patients in Cleveland differs depending on the hospital th treats them Life Span of Patients Treated at Hospital 1: 7.4, 7.8, 7.7, 7.5, 8, 8.2, 7.8, 8.6, 8, 7.8, 8.3, 8.3, 8, 7.6, 8.2, 7.9, 7.3, 8, 8.6, 7.3, 8.3, 8, 7.8, 8, 7.8, 8.1, 8.1, 8, 7.6, 7.6, 7.7, 7.4, 7.7, 7.8, 7.8 Life Span of Patients Treated at Hospital 2:

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▼ Part 1 of 4
A doctor in Cleveland wants to know whether the average life span for heart disease patients at four
hospitals in the city differ. The data below represents the life span, in years, of heart disease
patients from each hospital. Perform an ANOVA test with a 9% level of significance to test whether
the average life span of heart disease patients in Cleveland differs depending on the hospital that
treats them
< >
Life Span of Patients Treated at Hospital 1:
7.4, 7.8, 7.7, 7.5, 8, 8.2, 7.8, 8.6, 8, 7.8, 8.3, 8.3, 8, 7.6, 8.2, 7.9, 7.3, 8, 8.6, 7.3, 8.3, 8, 7.8, 8, 7.8, 8.1,
8.1, 8, 7.6, 7.6, 7.7, 7.4, 7.7, 7.8, 7.8
Life Span of Patients Treated at Hospital 2:
7.9, 7.9, 8.2, 8, 8.1, 8.5, 8.3, 8.4, 8, 8.2, 7.7, 8, 8, 7.8, 7.9, 8.1, 8.1, 7.8, 7.9, 8, 8.5, 83, 8.2, 8.3, 7.8, 7.9
Life Span of Patients Treated at Hospital 3:
8.2, 8.1, 7.4, 8.7, 8.6, 8.2, 7.9, 8.1, 8.1, 8.3, 8.3, 8, 7.6, 8, 7.4, 8.6, 8.2, 8.2, 7.9, 7.7, 8.1, 7.9, 8, 8.3
Life Span of Patients Treated at Hospital 4:
8.1, 8.2, 8.1, 8.3, 7.9, 8.6, 7.2, 7.5, 7.9, 7.8, 8.3, 8.5, 7.8, 7.4, 8.1, 7.9, 7.6, 7.6, 7.9, 8.4, 8.6, 7, 7.7
Step 1: State the null and alternative hypotheses.
Ho: P, H, H₂ = V₁
Ha: At least one mean isn't equal to the other means
We will use a(n) F
dfbetween =
Part 2 of 4
Step 2: Assuming the null hypothesis is true, determine the features of the distribution of
test statistics.
Submit Part
✓✓
✓✓distribution with numerator degrees of freedom
and denominator degrees of freedom dfwithin
Transcribed Image Text:Question 2 ▼ Part 1 of 4 A doctor in Cleveland wants to know whether the average life span for heart disease patients at four hospitals in the city differ. The data below represents the life span, in years, of heart disease patients from each hospital. Perform an ANOVA test with a 9% level of significance to test whether the average life span of heart disease patients in Cleveland differs depending on the hospital that treats them < > Life Span of Patients Treated at Hospital 1: 7.4, 7.8, 7.7, 7.5, 8, 8.2, 7.8, 8.6, 8, 7.8, 8.3, 8.3, 8, 7.6, 8.2, 7.9, 7.3, 8, 8.6, 7.3, 8.3, 8, 7.8, 8, 7.8, 8.1, 8.1, 8, 7.6, 7.6, 7.7, 7.4, 7.7, 7.8, 7.8 Life Span of Patients Treated at Hospital 2: 7.9, 7.9, 8.2, 8, 8.1, 8.5, 8.3, 8.4, 8, 8.2, 7.7, 8, 8, 7.8, 7.9, 8.1, 8.1, 7.8, 7.9, 8, 8.5, 83, 8.2, 8.3, 7.8, 7.9 Life Span of Patients Treated at Hospital 3: 8.2, 8.1, 7.4, 8.7, 8.6, 8.2, 7.9, 8.1, 8.1, 8.3, 8.3, 8, 7.6, 8, 7.4, 8.6, 8.2, 8.2, 7.9, 7.7, 8.1, 7.9, 8, 8.3 Life Span of Patients Treated at Hospital 4: 8.1, 8.2, 8.1, 8.3, 7.9, 8.6, 7.2, 7.5, 7.9, 7.8, 8.3, 8.5, 7.8, 7.4, 8.1, 7.9, 7.6, 7.6, 7.9, 8.4, 8.6, 7, 7.7 Step 1: State the null and alternative hypotheses. Ho: P, H, H₂ = V₁ Ha: At least one mean isn't equal to the other means We will use a(n) F dfbetween = Part 2 of 4 Step 2: Assuming the null hypothesis is true, determine the features of the distribution of test statistics. Submit Part ✓✓ ✓✓distribution with numerator degrees of freedom and denominator degrees of freedom dfwithin
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