Use the t-distribution to find a confidence interval for a difference in means μ₁ H₂ given the relevant sample results. Give the best estimate for μ₁ H2, the margin of error, and the confidence interval. Assume the results come from random samples from populations that are approximately normally distributed. = A 95% confidence interval for μ-H₂ using the sample results X 9.6, 311.9, m₁ =50 and X2 12.5,525.3,ny = 50 = Enter the exact answer for the best estimate and round your answers for the margin of error and the confidence interval to two decimal places. Best estimate = i Margin of error = i Confidence interval: i to i

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Use the t-distribution to find a confidence interval for a difference in means μ₁ H₂ given the relevant sample results. Give the best
estimate for μ₁ H2, the margin of error, and the confidence interval. Assume the results come from random samples from
populations that are approximately normally distributed.
=
A 95% confidence interval for μ-H₂ using the sample results X 9.6, 311.9, m₁ =50 and X2 12.5,525.3,ny = 50
=
Enter the exact answer for the best estimate and round your answers for the margin of error and the confidence interval to two
decimal places.
Best estimate = i
Margin of error = i
Confidence interval: i
to i
Transcribed Image Text:Use the t-distribution to find a confidence interval for a difference in means μ₁ H₂ given the relevant sample results. Give the best estimate for μ₁ H2, the margin of error, and the confidence interval. Assume the results come from random samples from populations that are approximately normally distributed. = A 95% confidence interval for μ-H₂ using the sample results X 9.6, 311.9, m₁ =50 and X2 12.5,525.3,ny = 50 = Enter the exact answer for the best estimate and round your answers for the margin of error and the confidence interval to two decimal places. Best estimate = i Margin of error = i Confidence interval: i to i
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