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The test of independence is a chi-square-based test used to determine whether two variables or factors are independent or dependent. This hypothesis test is used to examine the independence of the variables. One can construct two qualitative survey questions or experiments based on the variables in a contingency table. The goal is to see if the two variables are unrelated (independent) or related (dependent). The null and alternative hypotheses for this test are:

H0: The two variables (factors) are independent.

H1: The two variables (factors) are dependent

First, one identifies the observed frequencies and calculates the expected frequencies. The expected frequency of each entry is obtained by multiplying the row total and column total and dividing it by the sum of all the frequencies. Then the test statistic is calculated using observed frequency values from the contingency tables and the calculated expected frequencies. Then with the help of the chi-square table, the critical values in a one-tailed test with suitable confidence levels are calculated. If the test statistic is larger than the critical value and falls in the critical region, the null hypothesis is rejected; otherwise, it is accepted.

This text is adapted from Openstax, Introductory Statistics, Section 11.5, Comparison of the Chi-Square Tests.

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Hypothesis TestTest Of IndependenceChi square TestQualitative Survey QuestionsContingency TableNull HypothesisAlternative HypothesisObserved FrequenciesExpected FrequenciesTest StatisticCritical ValuesOne tailed Test

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8.12 : Hypothesis Test for Test of Independence

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8.1 : 母集団パラメータを推定する分布

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8.2 : 自由度

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8.3 : 学生tの配布

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8.4 : z分布とt分布の選択

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8.5 : カイ二乗分布

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8.6 : カイ 2 乗の臨界値を求める

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8.7 : 母集団標準偏差の推定

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8.8 : 適合度検定

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8.9 : 適合度検定の期待度数

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8.10 : コンティンジェンシーテーブル

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8.11 : Test of Independenceの紹介

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8.13 : 予想頻度の決定

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8.14 : 均質性のテスト

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8.15 : F ディストリビューション

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