TEST STATISTIC FOR NO DIFFERENCE IN MEANS, UNEQUAL VARIANCES t = x1- x- 2 s 12 n 1+s 22 n 2

MATLAB: An Introduction with Applications
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I am having a hard time figuring out how to fill in this equation and properly execute it. 

Specifically, when I fill in X, do I then multiply it by -1?

### Test Statistic for No Difference in Means, Unequal Variances

The test statistic is used to determine if there is a statistically significant difference between the means of two independent groups when their variances are unequal.

The formula is:

\[ t = \frac{\bar{x}_1 - \bar{x}_2}{\sqrt{\frac{s_1^2}{n_1} + \frac{s_2^2}{n_2}}} \]

Where:
- \(\bar{x}_1\) = mean of the first group
- \(\bar{x}_2\) = mean of the second group
- \(s_1^2\) = variance of the first group
- \(s_2^2\) = variance of the second group
- \(n_1\) = sample size of the first group
- \(n_2\) = sample size of the second group

This formula is typically used in a t-test for two independent samples with unequal variances, often referred to as Welch's t-test.
Transcribed Image Text:### Test Statistic for No Difference in Means, Unequal Variances The test statistic is used to determine if there is a statistically significant difference between the means of two independent groups when their variances are unequal. The formula is: \[ t = \frac{\bar{x}_1 - \bar{x}_2}{\sqrt{\frac{s_1^2}{n_1} + \frac{s_2^2}{n_2}}} \] Where: - \(\bar{x}_1\) = mean of the first group - \(\bar{x}_2\) = mean of the second group - \(s_1^2\) = variance of the first group - \(s_2^2\) = variance of the second group - \(n_1\) = sample size of the first group - \(n_2\) = sample size of the second group This formula is typically used in a t-test for two independent samples with unequal variances, often referred to as Welch's t-test.
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